Showing posts with label particles. Show all posts
Showing posts with label particles. Show all posts

Wednesday, August 26, 2026

Reseachers found a particle that consists only of gluons.



The glueball raises questions about the form of exotic matter. The gluonium, or gluonic material. It involves only gluons. Raises. Questions about other bosonic materials. Could W and Z bosons form similar structures? That gluons form a glueball. 

The most interesting thing about those bosonic materials. It is: could the photonium be possible? Photonium is the structure. There are two photons. Orbiting each other. The photonium could form a “photo ball” that can revolutionize photonics. 

Reseachers found new exotic matter. That matter, called a glueball, consists only of gluons. That matter can exist only briefly. Creation of a glueball.  A very high energy level. That means the glueball requires a situation where gluons will be shot out of atoms. This new exotic material can tell us something about matter and how matter got this shape. When. Quark-gluon plasma formed. Was the first particle that formed? Gluon or quark? 

The quark-gluon plasma formed directly from energy. This means that matter formed just after the Big Bang. But were the first particles gluons or quarks? Gluons should have a lower energy level than quarks. This energy travels to gluons. That keeps those quarks in their form. In the modern universe, there are no glueballs. Except. In the brightest and most massive stars. 

Those stars can have enough pressure and high temperature to create those glueballs. But glueballs can give a hint. About. Some part of dark energy’s origin.  Maybe the decay energy of glueball-type particles releases some part of dark energy. Dark energy might not be uniform energy. There can be many sources.  Because. We cannot measure dark energy. We cannot say what its origin is. But as we know, an EMP is a multi-frequency radio impulse. 

Maybe. Dark energy is a similar thing. Maybe. Dark energy exists on both sides of the electromagnetic spectrum. The model is that dark energy is very short- and very long-wavelength radiation. And one thing that can form dark energy is the universe itself. 

If. The hypothetical hypermassive black hole in the center of the universe exists. In this model, the entire universe orbits that incredible mass center. If. That rotation. Or cosmic flow is real. It turns the entire universe into a giant generator. Things like the cosmic web involve multiple structures. Spin in those structures.

From quantum-sized superstrings. To light-years-long structures. That can be thinner than a quark. Those spinning structures can put energy into motion. Another thing is. Particles can decay in unpredictable ways. Those particles could be gluon-quark combinations we haven't seen yet. The fact. About dark energy and the universe. Is this. There is structure. There, the dark energy comes. Or that structure. Or structures. They can release energy that is stored in their bonds. Those bonds release energy. Stored in their structures. 


https://interestingengineering.com/science/worlds-first-glueball-confirmed


https://www.popularmechanics.com/science/a73498456/glueball/


https://en.wikipedia.org/wiki/Gluon

Thursday, November 13, 2025

The existence of tachyons explains the nature of gravity.



Can tachyon be the same as graviton? Tachyon is a hypothetical faster-than-light particle.  That particle cannot exist in the 3rd dimension because nothing can travel faster than light. The graviton is a hypothetical. Transporter boson of gravity. If we think of a possibility. That we could find tachyon in our universe. That point is near black holes. There are models that we cannot observe tachyons. Because. When they interact with 3D particles or space and time. Tachyons release their energy immediately. That means a photon can form when a tachyon releases its kinetic energy. And the ring shape of the photon supports that model. 

The idea is this. When a black hole binds energy, or quantum fields from around it. And turns those fields into kinetic energy. That energy turns some particles into tachyons. If tachyon exists. It can escape from a black hole. So, that means tachyons can be a source of so-called Hawking radiation. If a tachyon travels in the universe, it can leave a similar energy cone behind it. 

As an aircraft leaves. When it travels faster than sound. If a tachyon can form a quantum version of a sonic boom, that means the quantum low pressure follows that hypothetical particle. That thing makes. Quantum fields fall into those cones. And that explains why gravity can only pull things. The tachyon can also make the Hawking radiation possible. 

"A tachyon or tachyonic particle is a hypothetical particle that always travels faster than light. Physicists posit that faster-than-light particles cannot exist because they are inconsistent with the known laws of physics. If such particles did exist they perhaps could be used to send signals faster than light and into the past. "(Wikipedia, Tachyon)

"According to the theory of relativity this would violate causality, leading to logical paradoxes such as the grandfather paradox. Tachyons would exhibit the unusual property of increasing in speed as their energy decreases, and would require infinite energy to slow to the speed of light. No verifiable experimental evidence for the existence of such particles has been found." (Wikipedia, Tachyon)

"The term "tachyon" derives from a 1967 paper by Gerald Feinberg about excitations of a quantum field with imaginary mass. Subsequent work has shown the excitations are not faster than light particles but particle physicists still discuss "tachyons", e.g. in tachyon condensation, when they are referring to tachyonic fields." (Wikipedia, Tachyon)





"A new theory, that explains how light and matter interact at the quantum level has enabled researchers to define for the first time the precise shape of a single photon. Credit: Dr. Benjamin Yuen" (ScitechDaily, Quantum Leap: Scientists Reveal the Shape of a Single Photon for the First Time)

When tachyon arrives. Into the 3rd dimension, it would release its extra energy as a ring-shaped energy wave. So the photon, or at least some of the photons, are the remnants of the tachyons that slow their speed immediately when they arrive in the 3rd dimension. Here, they slow their speed and leave the sockwave behind them. That means a photon could be a similar shockwave to what an aircraft causes. When it crosses the speed of sound. And maybe those shockwaves are photons. 

But near black holes, the massive gravity pulls quantum fields into the black hole. There, the hypothetical tachyon can travel against the quantum fields. That travels into the black hole, the tachyon that can escape from the black hole can exist because the quantum field that travels against the tachyon allows it to cross the speed of light virtually. When a quantum field travels to a particle. And impacts it, the impact speed can be faster than the speed of light. If a particle travels 60% of the speed of light, and a quantum field travels against it with 70 % of the speed of light. 

The impact speed is 130% of the speed of light. That thing is called border crossing. The neutrino telescope benefits from a similar effect. When a neutrino travels into Earth's atmosphere and water, it travels faster than the speed of light in a medium. The neutrino must slow its speed, and during that process, it sends a blue light shockwave. That shockwave is like a quantum version of a sonic boom. 

When we think of a possibility. That a hypothetical graviton is the same thing as a tachyon. When a hypothetical tachyon travels out from the black hole. It can leave a similar cone behind it. As an aircraft leaves. When it travels faster than sound. That cone is called a sonic boom. If a tachyon leaves that kind of cone after it. If there is. Some kind of lower energy area. Energy around it starts to fill that area immediately. If a black hole sends those hypothetical tachyons, they could form the lower-energy area around it. If those hypothetical tachyons. Come out of a black hole. As pulses. That explains black hole quakes. And that explains why gravity has only one way effect. The cone that tachyon forms after it pulls particles into it. 


https://scitechdaily.com/quantum-leap-scientists-reveal-the-shape-of-a-single-photon-for-the-first-time/


https://en.wikipedia.org/wiki/Fundamental_interaction


https://en.wikipedia.org/wiki/Graviton


https://en.wikipedia.org/wiki/Hawking_radiation


https://en.wikipedia.org/wiki/Tachyon

Saturday, September 2, 2023

Gravitational models that could revolutionize physics.

  Gravitational models that could revolutionize physics. 


There is a theory that gravitation interacts with dark matter by using the non-local model. That means the gravitation interaction happens through dark matter. The dark matter or especially "cold dark matter" forms the area there energy level is lower than outside it. 

And then quantum fields start to travel to that area. So gravitation is where quantum fields flow to the gravitational center. We can say that quantum fields are like rivers or whirls in water. And when they travel to the gravitational center they take particles with them. 


Theoretically, there are three types of material.


Hot dark matter

Visible material

Cold dark matter. 



The energy level of cold dark matter is lower than visible matter. Hot dark matter has an energy level higher than visible matter. In that model, the place of visible matter is between hot and cold dark matter. The cold dark matter is like "quantum ice". 

That means energy travels from visible matter to cold dark matter. Because cold dark matter is receiving part in that interaction, it is invisible to us. In energy models, energy travels from one particle to another until those particles reach the energy minimum. That term means that both particles reach the same energy level. The reason why visible matter and cold dark matter cannot reach energy minimum is that there is much more cold dark matter than visible matter. And that makes energy minimum impossible to get. 



The image above shows how plasma pulse forms. In that image, there is a black hole. But all plasma pulses are forming in the same way. The magnetic poles of the object pull anions and ions to them. And then behind that object, the electromagnetic forces, along with the gravitational field pull those particles together. 

The hot dark matter could be invisible for the same reason. The high energy, small-size particle pushes quantum strings past it. And then behind that particle those superstrings impact and that impact forms wave movement with extremely short wavelength. So that thing could be the source of dark energy. Or it could be one possible source of dark energy. 

Energy or wave movement flows to the cold dark matter, which could be material that formed after visible material. Hot dark matter would be material that formed before visible material. In that model, high-energy hot dark matter travels before the visible material. 

And now everybody asks "Why can't we not see hot dark matter"? The hot dark matter could be so high energy that it simply pushes radiation past it. The model is like in the plasma pulse. The radiation that hits the hot dark matter cannot reach that material because hot dark matter's energy level is too high and it pushes radiation past it. And if the radiation or superstrings will turn return together behind that particle that could explain dark energy. 

When those superstrings or extremely thin energy waves hit together back in the particle they form impact radiation with a very small wavelength. That thing could explain the dark energy. Or impacting superstrings can explain at least a small part of dark energy. 


Saturday, November 12, 2022

Could graviton be one or two quantum-size black holes?



Another model that could explain why gravitation is so special. 


Above this text is an image of the black hole. But that image could be the image of a quark. In some scenarios, the graviton is a small black hole inside the quantum field. The quantum tornado forms the point where that radiation pushes the quantum field away. So there is the electromagnetic vacuum that pulls the quantum field to the ball-shaped form. But there is also another version of the graviton and its interactions. 

The hypothetical graviton particle that should transport gravitation may be two quantum size black holes. That thing causes a quantum field whose shape is similar to the magnetic field that forms around a rod magnet. Those quantum-size black holes would be the south pole against the north pole. And there is forming a quantum tornado around those two black holes. 

Then the quantum fields are forming the lightning structure or superstring structure. That is looking like a whisk. When those black holes that size is smaller than quarks are starting to make the quantum fields or quantum lightning around them the outcoming radiation makes those flashes of lightning stronger. Because that structure starts to rotate, it turns to look like a ball. And maybe that thing is the quark. Maybe that kind of thing could explain gravitation. 

Another model of gravitation or graviton particle is that gravitation is the force that is forming around the fast-spinning particle. The idea is that when a particle spins. It creates the effect where wave motion travels to the poles or the axle of the spinning particle. And because the particle is extremely small. 

There forms a small quantum vacuum bubble to its poles because those waves impact each other just above the quantum field of that spinning particle. That bubble starts to pull wave motion to the axle of the particle. So when wave motion travels at the surface of the particle. 

Those waves are transporting the wave motion that hits the particle to its poles. So that means the particle that is making the effect of gravitation is like a neutron star or black hole. When a particle spins at an extremely high speed. It transfers wave motion to its poles like neutron stars or black holes are transferring. 

What makes gravitation interesting? That is that the graviton is missing. There is the possibility that a graviton is a quantum-size black hole or so-called black photon. The form of the graviton is one of the most important things in the gravitation theory. 

The thing is that things like neutron stars or black holes are not forming energy from nothingness. They are like generators. Generators are transforming motion into electromagnetism. The thing that neutron stars and black holes are doing the same thing. They are transforming electromagnetic fields into powerful energy beams. 

Or otherways saying they are transferring the frequency of the radio waves to X- and gamma rays. In similar ways, the Casimir effect doesn't make energy from nothingness. When Casimir plates are taken very close to each other electron cores form the quantum bridge over that hole. Then the outcoming radiation will inject energy into those bridges. And that thing loads the energy to the Casimir circuit. 


https://en.wikipedia.org/wiki/Casimir_effect


https://miraclesofthequantumworld.blogspot.com/

Monday, October 10, 2022

Quantum entanglement is a useful tool also for high-power particle accelerators and quantum ion engines.



Quantum entanglement can use also for making new and powerful particle accelerators. If we think about the ability to use positronium or protonium as the beginning point of the electron-positron or proton-antiproton impacts. That thing can make it possible to adjust the impact point and energy levels in the matter-antimatter collision. 

A positronium is a pair of positrons and electrons that are orbiting each other. And the protonium is the proton and antiproton pair where those particles are orbiting each other. If those things are put in quantum entanglement that allows particle accelerators to create particle pairs, which energy level is the same. That thing makes it possible to create highly accurate high-energy particle collisions. 

Quantum entanglement makes it possible to create powerful particle accelerators. The system would base free-electron lasers. That kind of powerful, but lightweight particle accelerator would use two electron clouds. The particle accelerators will pump energy to the first electron cloud. 

And then, the wave motion of those electrons will aim at the second electron cloud. That thing makes it possible to use photons to accelerate those electrons. Because free electrons are sending that wave motion between each other. That thing maximizes the impact power. 


Quantum routers and quantum ion engines are the next-generation tools. 


Quantum entanglement makes it the system possible to create two electrons with the same energy level. That thing can be useful in the quantum router that routes information between two quantum systems. The ability to create the qubits that are operating just at the same time makes quantum systems more effective. 

This thing makes it possible to create new types of macro-size quantum systems. In this kind of system, quantum computers are acting as macro-size qubits. And that allows the creation of multiple internal quantum computing systems. 

But in quantum ion engines, the system creates quantum entanglement. Then the photons will send to the channel that connects those particles. Then those electrons will fly in different directions. That increases the power that impacts the front side of the ion engine. That kind of system could be useful in the new ion system that can revolutionize aviation and spaceflight. 



https://en.wikipedia.org/wiki/Positronium


https://en.wikipedia.org/wiki/Protonium

Thursday, October 6, 2022

How to adjust energy levels in quantum entanglement without breaking superpositioned quantum entanglement?





Low-energy particles can adjust quantum entanglement's energy level in quantum computers. 


The low-energy particles can use to adjust the energy level of quantum entanglement. When the energy level of the quantum entanglement rises high enough the low-energy particle will be used to pull energy away from quantum entanglement when the energy level in that structure rises too high. 

And that helps to keep the energy level in quantum entanglement longer in the right position than without that system. That helps the quantum computer operate longer time without re-adjusting. 

The problem with quantum entanglement is that they remain only for a short time. When the energy level in that structure turns stable the quantum entanglement is destroyed. For making energy flow another side of the quantum entanglement must have a higher energy level. 

One possibility is to shoot low-energy quasiparticles under the side of the quantum entanglement that is rising too high. The idea is that those particles are pulling too much energy out from the quantum entanglement. 

And those particles that are at low energy levels will use to adjust the energy level in quantum entanglement. So in this model, the low-energy particles are shot near the quantum entanglement the energy level is too high. 


How can researchers exchange information between two molecular (extremely complicated) quantum systems? 


Of course, the energy level of another system must be higher. That thing makes information flow between those molecular systems. 

When we are willing to make two or more complex quantum system exchange information we must find something that is the same in both systems. That thing can be quarks or bonds between quarks. 

If we want to exchange information between two molecular structures by using quantum superposition we must realize that the transmitters and receivers of those complex quantum systems must be so big that they can put each other resonate. 

One of the things that are similar in all quantum systems is the bonds between atoms. There is the possibility that by stressing those chemical bonds with electricity the controller can transmit the information between two molecular quantum systems by using superposition and quantum entanglement. 

In that case, the bonds between atoms are offering a good tool for that purpose. The superpositioned things must be so big that the oscillation is. That they send to quantum fields in the molecular structures can be measured. Normally, superpositioned quantum entanglement is possible only between elementary particles. 

Or actually, the energy fields of atoms can be superpositioned. But there is so much turbulence that some other point of the system must put to resonate or resonating atoms must be some extraordinary elements. If the system uses common elements. 

That causes turbulence in the resonance.  The resonance is the key element in quantum entanglement. The superposition means that the elementary particles are oscillating with the same frequency. And they are connected by an energy bridge. 

In most cases, quantum entanglement made by using photons. But in molecular systems that are much larger than individual photons, the chemical bonds are a good thing that can put to superpositioned quantum entanglement. 


Sunday, September 11, 2022

What if tachyons are virtual particles?



A hypothetical "Faster-than-light" particle called tachyon might have another form than we expected. There is the possibility that tachyons are particles whose energy load is so high that they cannot interact with other particles. That means that the tachyon would just pull the other particles away from it. That thing denies its interaction. 

In some visions, the particle that travels near the speed of light turns into a donut-shaped structure. And the tachyon would pull through that particle. In that model, a tachyon is not tachyon anymore, when it can interact with the other particles. 

The idea of the virtual particle comes from the model where particle impacts with quantum fields. That thing causes the idea that the size of the particle will expand. And then the photon hits in the middle of that particle. This thing causes the electromagnetic field in that pancake-shaped particle will travel to the edge of it. In that model, a photon can also make a hole in the particle that is turned flat. 

A fast spin with A powerful energy load causes the situation, where superstrings that are forming that particle will start to make a hole in the middle of it.  Then the quantum field will press through that donut-shaped particle and forms the quantum bag.

When a particle travels at extremely high speed there is forming channel behind it. That channel is in a lower energy level than the space around it. And in that case, there is the possibility that this channel can pull the tachyon to the third dimension. Or otherwise said, the tachyon drops to energy level, where we can observe that particle. 

In some other models, the middle of the particle forms a channel that pulls energy from the upper energy levels to the lower energy levels. But when we are observing hypothetical tachyons by following this model, we must realize one thing. Tachyon, if it exists is one of the particles. Like every other particle are. 

And that means there is also the channel behind the tachyon. That channel has a higher energy level than maybe the tachyon itself, but it certainly would have a higher energy level than the highest possible energy levels in our universe. 


https://miraclesofthequantumworld.blogspot.com/

Sunday, August 14, 2022

The collapse of the Higgs boson and turning material invisible.



The collapse of the Higgs boson is one of the theoretical versions of the destruction of the world. The term collapsing Higgs boson means that Higgs Boson will turn flat or starts to vaporize (turn to wave motion) very fast. The idea of this theory is that when the size of the Higgs boson changes. 

That thing causes the situation where the material is losing some part of it because that collapsing Higgs boson forms a small hole in the energy or quantum field in the universe. And that hole causes the superstring that forms quarks will flow to fill that hole. 

Well, that thing doesn't mean that this thing destroys the entire universe. The thing is that the material like quarks and other elementary particles near that Higgs boson will change their size. That thing turns material invisible. The size of the particle means its energy level or the size of its quantum field. 

A change in the diameter of the particle causes the wavelength of the reflection from the particle's quantum field changes. The reason for that is that the wavelength of that reflection is the same as the size of the particle. 

Reflection is the thing that makes the material visible. When a particle faces radiation stress that radiation adjusts it to a higher energy level. And when that radiation stress ends that particle sends energy quantum when it tries to reach the base energy level that is the same as its environment. 

The wavelength of the radiation or wave motion is the same as the size of the particle that sends it. So the particle can turn invisible to another particle. Or otherwise, we can say: that particles can lose their ability to interact or send the radiation that we can see. 

The antimatter-material annihilation can cause that there is forming a WARP bubble. And that bubble can cause the size or energy level of the Higgs boson changes. That thing can change the size of elementary particles in the quantum system. 

So there is the possibility that the size of the material or its elementary particles can adjust by using antimatter and Higgs boson combination. The idea is that the antimatter annihilation forms the WARP bubble or small vacuum. Then in that vacuum will put the Higgs Boson. The energy pump to the Higgs boson will adjust the Higgs boson's size or energy level.  And then the Higgs boson will pull the superstring out from those elementary particles. That thing can turn material invisible. 

The quantum vacuum will pull the superstring out from the Higgs boson. And then the energy pump to that boson will pump energy to it. So when the size or energy level of the Higgs boson in the quantum system is higher than the boson releases energy to other members of the quantum system. When the energy level of the Higgs Boson is lower than other quantum systems energy or superstrings will flow into other members of that quantum system. 


https://miraclesofthequantumworld.blogspot.com/

Wednesday, April 27, 2022

Measurement of the "W" boson was not that expected.



The "W" boson was too heavy. And that thing can revolutionize physics. The "W" and "Z" bosons are transmitting weak nuclear force or weak interaction. So they keep the nucleus of the atom in one piece. The weak nuclear force or the weak interaction effects between protons and neutrons. The "W" boson is too heavy. And that means inside the "W" boson could be something connected to that particle. 

One of the things that can make that kind of thing is some kind of quantum plaque that is around that boson. Or there is some kind of particle that creates the form that you can see above the text. If we are thinking that "W" and "Z" bosons are affecting different directions. That means the mass of those bosons should be the same. 

Normally, the "W" boson is between protons and neutrons. The quantum fields of those particles push that high-energy and short-living particle into a piece. So the "W" boson is like a spring that is between protons and neutrons. When those particles are removed from around it.

 That thing releases those springs. The ends of those structures of the "W" boson are starting to oscillate and move back and forth. That movement turns stronger and stronger because it takes mass away from the "W" boson. And finally, the entire boson turns to wave movement. So inside the nucleus of the atom is also wave movement that resonates "W" and "Z" bosons". That wave movement is the interaction that happens between "W" (or "Z") bosons. 

Normally people don't know that most radioactive isotopes are not sending radiation all the time. The reaction that causes the radioactive radiation is outcoming energy stress. When that energy stress hits the radioactive isotopes it will shake their balance. This is the reason why warm nuclear materials are more radioactive than cold radioactive materials. 


The radiation must increase the energy level of the atom high enough that it can begin the reaction which turns the "down" quark into an "up" quark. And that thing launches the radioactive breakup. 


The weak nuclear force can transform a "down" quark into an "up" quark in neutron. That thing happens when weak interaction emits the "W" boson. Quarks are in triangular, or "V"-shaped form in the protons and neutrons. When weak interaction transforms the "down" quark into an "up" quark the "V" shaped form of the quarks turns around. And that thing sends the electromagnetic radiation. 

That radiation pushes that new particle away from the nucleus of the atom. And this is the thing that causes the radioactive breakup. The transformation of the "down" quark into an "up" quark is the thing that causes radioactive radiation and turns elements into radioactive. The number of neutrons determines how radioactive some isotope is. When there are a lot of neutrons there are lots of transformation cases. 

The radioactive breakup begins when the "W" boson transforms down quark to up quark. That transformation sends electromagnetic radiation to other quarks. And then also other quark structures are starting to rotate. That thing causes the nucleus of the atom starts to rumble. That rumble is seen as gamma-radiation. 

Then that energy load that travels through the atom pushes electrons away from their trajectory. Beta radiation is mainly fast electrons. The gamma pulses are making the effect that electron cores of the atom expand and contract. When electrons are escaping that thing rips the nucleus to pieces. 

By the way...

Theoretically, "W" and "Z" bosons can use as the power source. Those high-energy elementary particles are short living. And when they explode they are releasing energy that is stored in them. That is one thing that makes those bosons interesting. 


https://scitechdaily.com/a-decade-of-science-and-trillions-of-collisions-show-the-w-boson-is-more-massive-than-expected-a-physicist-explains-what-it-means/


https://en.wikipedia.org/wiki/Quark


https://en.wikipedia.org/wiki/Standard_Model


https://en.wikipedia.org/wiki/W_and_Z_bosons


https://en.wikipedia.org/wiki/Weak_interaction


https://miraclesofthequantumworld.blogspot.com/

Thursday, April 14, 2022

The mystery of dark energy

 

Dark energy is a mysterious wave movement. That is ripping the universe into pieces. 


There might be many frequencies and sources of dark energy. And the source of it can be in black holes or neutron stars. When the energy level of a neutron star changes it sends similar neutron radiation 

Black holes and neutron stars are sending radiation that is invisible to us. When particles or wave moment is orbiting the event horizon they are waving. And that waving causes wave movement that is traveling in all directions in the universe. The black hole acts like an elementary particle and it can send a unique size wave movement. 

Or when the neutron star is stressed with the energy it acts as a neutron bomb. When the material flow to the neutron star is increasing it will pump more energy to neutrons. And in the point when the energy stress decreases the neutrons will send the neutron radiation as well as they do in the neutron bombs. The fact is that when the energy load hits the neutron star it will store a little bit of that energy. 

And sooner or later the energy level of those neutrons is rising so high that their quantum fields are jumping outward. That causes the energy or wave movement that those neutrons are sending traveled through its magnetic field. Maybe if the energy level is rising too high. Also, quarks can send similar radiation to hadrons. Or the expansion of the universe causes the material like quarks are sending photons or wave movement when the quantum field around them is turning weaker. 

In image 2, we can see the hadron. Which can be a proton or neutron. We see quarks are at a triangular position in that particle. And gluons are located between them. So the expansion of the universe causes. The quantum field that is around hadrons turns weaker. That means the gluon is pushing quark a little bit farther than before. That thing causes the wave impulse that travels across the universe. Or when the energy is impacting the quark that can cause a similar energy impulse with neutron radiation but the sender is the quark. 


Could tachyon be the source of dark energy? 


The reason, why we cannot see that hypothetical particle can be simple.  That it's in the fourth dimension. So the interaction between that particle and other particles is impossible. 

That means, that when the tachyon falls to the third dimension it sends wave movement. But the idea is that when the tachyon sends that wave movement it turns to a photon or Higgs boson. 

One of the things that can explain the dark energy is the tachyons. Tachyon is the hypothetical faster-than-light particle. The tachyon would be a regular particle whose energy level is extremely high. That means tachyon would be in the fourth dimension. The time and energy travel always in the same direction also in that dimension that is the higher energy level than our dimension. So tachyons can lose so much energy that they fall to our third dimension. 

But we cannot confirm the existence of that particle because it turns photon or Higgs boson and electron in our third dimension. The thing is that the tachyon is invisible when it's in the tachyonic shape. 

When its energy level decreases so low that we can see it. The tachyons form is changed. When that tachyon is falling from the fourth dimension it releases its extra energy as the form of the wave movement. And there are no matching particles in the third dimension and wave movement doesn't interact with sensors. 



There is a more or less serious explanation for dark energy.


There is a possibility that dark matter is forming all the time in the universe. And those particles can cause movements in the quantum fields that can be seen as dark energy. In some other versions of that theory, some ghost particles like impacting neutrinos are sending that wave movement. 

But then we must realize that many things can carry the name "ghost particle". One of the ghost particles is forming when an electron or some other particles are traveling at a very high speed. The doppler field at the front of the particle will turn very strong. 

And that forms the electromagnetic vacuum behind it. So sooner or later those quantum fields will turn stronger than the electromagnetic vacuum and fill it. That thing can send the wave moving through the universe.  

The origin of the dark energy can be also in the oscillating superstrings. Or bites of the wave movement. The thing is that sometimes is introduced that the quantum entanglement is causing the form of that mysterious wave movement. The particles can superposition and entangle spontaneously in the universe. 





Image 2:


Could the quantum entanglements be the origin of the dark energy?


Quantum entanglement is an energy channel between two particles that is acting as an electromagnetic belt. That thing makes particles rotate in opposite directions. When quantum entanglement is forming it doesn't affect to particle right away. The first thing happens in the interaction. Is that the quantum field around the particles starting to connect. And then those quantum fields are taking those particles with them. 

At first, the quantum field around the particle is starting to oscillate. And that oscillation connects those quantum fields. So that quantum interaction slides on the surface of electrons and other particles. Electrons and other fermions are not smooth. They are like yarn balls of the ball-shaped wave movement that is taken the particle form. 

That thing causes the particle-quantum field interaction causes the roll or the oscillation in that quantum field. So the quantum field of the superpositioned and entangled particles or their quantum fields are sending the wave movement that researchers cannot see. The reason why that kind of oscillation is difficult to see. 

Is that the quantum entanglement sends it from all its distance. The magnetic- or quantum field sends the dark energy or invisible wave movement from its entire distance. The thing is that the wormholes can be the extreme versions of the power bridges in quantum entanglement. 


https://en.wikipedia.org/wiki/Four-dimensional_space


https://en.wikipedia.org/wiki/Quantum_entanglement


https://en.wikipedia.org/wiki/Tachyon


https://miraclesofthequantumworld.blogspot.com/



Monday, March 14, 2022

The quantum boomerang can transmit information between two quantum systems.


"The Weld Lab's quantum boomerang showed a lithium atom's initial departure and return to average zero momentum despite periodic energy "kicks" from their quantum kicked rotor. Credit: Roshan Sajjad" (Phys.org/Physicists report on 'quantum boomerang' effect in disordered systems)


In the quantum world, particles are acting like wave movement. Or the particles like electrons have no straight core. The core of the particle is waving because the particle is carrying wave movement. The quantum boomerang means that when we are throwing particles to the quantum system. That particle would return like a boomerang. But when the particle is returning it takes data from another quantum system. 

The boomerang effect is possible if the material or quantum system is non-perfect. There must be errors in the positions of atoms that the quantum boomerang can be possible. So the quantum systems that are forming the quantum boomerang must be disordered. When we are thinking the disordered systems there is the possibility that the quantum system that is used as the quantum computer is the neutron cloud of the nuclear reactor. 

The neutrons can be superpositioned and entangled. And neutron radiation is easier to separate from other wavelengths. But the problem is how to get free neutrons? The answer is that nuclear reactors are full of free neutrons. The superposition of the neutrons in that neutron cloud could make by using lasers. Or some other electromagnetic radiation. 

The quantum boomerang could be the particle that moves between quantum pillars between two quantum systems by using the "8"-shaped trajectory. The quantum pillar can be the extremely small pillar-looking magnetic field. Or it can be the particle. 

Or it can be the combination of particle and magnetic field. There could be an electron or some other particle inside the pillar-looking quantum field. The electron would orbit around those pillars and interact with another electron inside that electromagnetic field. When the electricity of an electron is changing that thing causes the strength of the electromagnetic field where that stable particle changes. That thing can use to transmit data between two quantum systems. 





Image 2) Nuclear plant


The image above this is portraying a nuclear plant with two nuclear reactors. Those nuclear reactors are forming two quantum systems. 

There is one interesting thing in quantum systems. The quantum systems might be in different places. 

Or the quantum system can be at different energy states. When energy is pumped to the quantum system it will move to a higher energy level. When energy transmit ends that system will start to deliver energy until it reaches the same energy level with its environment.

So when the energy level of the system is changing the system is not the same anymore if there are no changes if we observe it from outside. Same way two virtually different quantum systems can be the same system. If they are connected with superpositioned particles. 

So when we are thinking possibility that the energy of the quantum system decreases. That means the quantum system that is in lower energy level is a different system than it was in higher energy level. So the position of quantum systems can be at the place, time, and energy. 


https://www.news.ucsb.edu/2022/020561/quantum-boomerang#:~:text=Physicists%20at%20UC%20Santa%20Barbara%20have%20become%20the,disordered%20system%20are%20kicked%20out%20of%20their%20locations.


https://phys.org/news/2022-02-physicists-quantum-boomerang-effect-disordered.html


Image 1) https://phys.org/news/2022-02-physicists-quantum-boomerang-effect-disordered.html


Image 2) https://www.washingtonpost.com/opinions/we-need-nuclear-energy/2019/06/20/5a4ab20a-9127-11e9-956a-88c291ab5c38_story.html

Sunday, January 30, 2022

Could the Schwinger effect explain the Big Bang?



The Schwinger effect is the effect that turns wave movement into particles. The Schwinger effect always forms particle-antiparticle pair.  As you see from the GIF above this text the wave movement is splitting into two parts when it faces the vacuum bubble. 

Then those waves movements that are coming from different directions are hitting together. When two wave movement flows are hitting together at a straight angle that thing forms the particles. 

The origin of the neutrinos can also be in the Schwinger effect. In that model, the electromagnetic wave movement would turn to particle form. When it hits the magnetic field of the star. 

Somebody is an introduced theory.  Maybe, someday researchers can foom particles form in the laboratory by using the Schwinger effect. If the light or some other electromagnetic wave movement is jumping between two mirrors that thing can form particles. 

But as you see from the GIF a similar effect is seen in the black holes. So is it possible that black holes also turn wave movement into particles? The light or some other electromagnetic wave movement would travel to both poles of the black hole. There they face extremely powerful X- or gamma-ray pike. And that pike can turn wave movement to yarn ball. 

In that case, the Schwinger effect always forms particles. And their antiparticle pair. So if we are thinking that the Big Bang was some kind of Schwinger effect that means there could be two wave movement beams. Those wave movement beams would go around the quantum vacuum. And then two particle groups formed. That particle groups were particles and their antiparticles. 

If the size of that quantum vacuum was high enough. That thing makes it possible that there are formed two universes. Or universe and the antimatter universe. But if those impacts of wave movement happened close enough the electromagnetic pulling effect will pull particles and their antiparticles together. Causing an annihilation reaction. 


The Dark Big Bang (or Two-staged Big Bang) theory goes like this:


1) At the first formed groups of particles. The particles and their anti- or mirror particles.


2)  After that began the annihilation that formed the proto-material like quarks and other fermions. Those particles formed in the scattering where crossing wave movements turned to yarn balls that are called fermions. 


Theoretically, the reason why wave movement is not traveling across the quantum bubble. Is that it needs a quantum layer where it travels. The material can cross the quantum vacuum only in the particle form. The reason for that is that. Wave movement requires some kind of layer that carries that thing. We can call that layer a brane layer. If there is not that kind of brane layer. That means the wave movement would curve to yarn ball or simple particle form. 

Or otherwise, it's possible that. If the wave movement crosses the quantum vacuum it faces the quantum wall and turns to particles. That thing can be the origin of the universe. But where do those wave movements come from? Who knows? Maybe there are other universes.  


https://en.wikipedia.org/wiki/Schwinger_effect


https://thoughtsaboutsuperpositions.blogspot.com/

Monday, January 10, 2022

Could hypothetical planet x be the key to quantum stealth?

 


"The Artist's impression of Planet Nine as an ice giant, Eclipsing the central Milky Way, with a star-like Sun in the distance. Neptune's orbit is shown as a small ellipse around the Sun. The sky view and appearance are based on the conjectures of its co-proposer, Mike Brown". (Wikipedia, Planet Nine)


In this text, planet x is the same thing as planet 9. That term means the gravitational effect that causes anomalies in the trajectory of planet Neptune. Another explanation for those anomalies could be the energy waves or radiation pike that comes from Uranus. 

Or maybe the certain position of Alpha Centauri, Proxima Centauri, and Luhman 16 causes that effect. And the other explanation of that gravitational phenomenon is the large group of asteroids in the Kuiper Belt. The large group of small objects is also the ability to affect the trajectories of the large objects. 

So nobody has ever seen that planet. So the planet 9 or planet x remains a mystery. And the only evidence about it is the anomaly in the trajectory of planet Neptune. 

Is planet X invisible because its temperature is lower than the three-kelvin background? The little-known theory or hypothetical planet x or Planet 9 is that the planet is a very old rocky planet. The temperature of the nucleus of that planet would be lower than the 3 Kelvin cosmic backgrounds. And that makes energy flow to the nucleus of that hypothetical planet. 

That means the zero-point energy will make that planet invisible for infrared. The energy would flow away from that planet from its poles. The idea is that if the energy production of the extremely old planet ends the temperature of its nucleus will decrease lower than the cosmic background. 

Another theory is that Planet x is created or formed by mesons. Or its core is covered by mesons. Mesons are the quark groups like quantum cushions. That means there is the possibility that some mesons are capturing photons inside them. And if the object is covered by quantum cushions that thing makes objects invisible. 

The name "Planet x" means the unknown gravitational effect that is causing an anomaly for the trajectory of planet Neptune. There is suspicion that there is one or more yet unknown planets in our solar system. 

If that hypothetical planet is an extremely old rocky planet the origin of that mysterious thing would be in some other solar system. In this theory, "Planet 9" is the ex-rogue planet. That is captured by the gravitational field of the solar system. 

The thing that makes this planet interesting is how it can be invisible? If electromagnetic energy would travel only in one direction. That is the nucleus of that planet. That makes it almost impossible to detect. Detection of the object requires reflection. And if energy flows only to the nucleus there is no reflection. 


https://en.wikipedia.org/wiki/List_of_hypothetical_Solar_System_objects


https://en.wikipedia.org/wiki/Planet_Nine


Image: https://en.wikipedia.org/wiki/Planet_Nine





The quantum stealth


These kinds of things are researched also in the new type of quantum stealth technology. The zero-point energy would give more power to the plasma-jet engines. The zero-point energy means that there is a zero-kelvin or extremely low energy object in the structure. And that thing makes it possible that the energy travels in one direction in the structure.

Also if the structure is covered by using quantum cushions. There is the possibility that electrons, photons, or even wave movement would not reflect from that object. This kind of thing is called quantum stealth. 

The system uses the superconducting material inside the craft for making the energy or wave movement travel in only one direction. And that is inside the craft. That means at least radars would not get an echo from the layer. 


https://futurism.com/scientist-jet-engine-electricity-thrust


https://en.wikipedia.org/wiki/Meson


https://en.wikipedia.org/wiki/Zero-point_energy


Image: https://en.wikipedia.org/wiki/Lockheed_F-117_Nighthawk


https://thoughtsaboutsuperpositions.blogspot.com/ 

Monday, December 6, 2021

AI can find answers to many secrets in the universe.


AI can find answers to many secrets in the universe. 



Image 1) The model of bosonic cloud.

There is introduced an idea. That boson can also form the stars.


Is dark matter the missing bosons below Higgs boson? There is no confirmed information that some particles are missing in the Standard model. But because every line of the table is the same number of particles. There is the possibility. That is in the line of the Higgs boson could be three previously unknown particles. 

There is introduced an idea. That boson can also form the stars. Like fermions could do. There is not a certain observation of the quark stars.

But those things would be the fermion stars. Quarks are fermions. But could also other fermions like electrons form the stars like giant electron crystals. And could bosons make the same thing? Maybe someday the AI can answer those questions. 







Image 2 Fundamental particles of Standard Model


The AI can search molecules from exoplanets. And it can also solve the mystery of dark matter. 

The AI can find molecules from the exoplanet atmosphere. And maybe someday the AI can find extraterrestrial lifeforms. And even alien civilizations and new natural laws. The thing is that artificial intelligence needs the matrix that is used to compile the data. That is collected from the astronomical instruments. 

This is why researchers should send the telescope far away from the Sun. That telescope can collect data on what planet Earth looks like far away from it. Then that data can compile with the data that telescopes are collecting. And maybe someday those systems and AI can find the alien race. 

The conditions of exoplanets can be extreme. The high temperature and extremely high radiation levels on the planets. Can cause that the atmosphere of the planet has an atomic form. That means the annealing of those atoms is pushing other atoms away from them. And that thing denies the form of molecules. 

The conditions on exoplanets continue for millions of years. So that thing can make the chemical and physical environment that does not exist on Earth. 


Maybe AI can solve the mystery of the ninth planet and dark matter. 


Artificial intelligence is making it possible to analyze large data masses. And maybe that thing can solve the mystery of "Planet 9" or the mysterious errors in the trajectory of planet Neptune. There is a possibility that the mysterious X-ray bursts in the atmosphere of Uranus. Aave the connection with that phenomenon that causes those anomalies in the trajectory of Neptune. 

Could that thing be the small black hole? If the black hole aims the particle flow passes it by using a parabolic trajectory that thing can happen without causing gamma-ray emission near the black hole itself. 

There is the possibility that the mysterious "Planet 9" is even more exotic than some black hole. Could that thing be the bubble of dark matter? Or when we are talking about the things like Fermion stars. We are forgetting that there is the possibility that there is some kind of bosonic star in the universe. 

Could it be possible that the fermion or bosonic stars are pushing particles away? The idea is that when those particles are spinning they are sending radiation.  There is mentioned an "exotic star" 

The term "An exotic star is a hypothetical compact star composed of something other than electrons, protons, neutrons, or muons". So could the bosons create that "exotic star"? (https://en.wikipedia.org/wiki/Exotic_star)

And that radiation can push objects or particles away. The reason why we cannot see that radiation could be the particle that sends the wave movement has a different size than particles that we know. 

The fermion stars would be large electron crystals. And there is the possibility. That also bosons can create crystal structures. The quark stars would be the fermion stars. But the thing is that the boson stars would be even more exotic. 



Image 3: Artists impression of Exoplanet KELT-9B


There is introduced an idea. That ghostly bosonic clouds are the key to dark matter. The idea is that the dark matter is actually "missing bosons" below the Higgs Boson. So that means that if those bosons are creating crystal structures those structures might be very ghostly. 

The question is, could it be possible that the fermion or bosonic stars can also push objects away? In that case, the high energy load that hits those mysterious objects causes the case that fermions or bosons are starting to spin. They are releasing energy as radiation. 

And that radiation can push objects away from the fermion or boson star. The reason why we cannot see that particle would be. That particle that sends that radiation or wave movement has a different size than particles that we already know. 

There has been introduced an idea. That the ghostly bosonic clouds can be the key to dark matter. So could the dark matter be the "missing bosons" below Higgs boson? 


Sources:


https://www.livescience.com/planet-nine-little-black-hole.html


https://newsbeezer.com/indonesiaeng/temperature-exoplanet-kelt-9b-similar-to-star-temperature/


https://physicsworld.com/a/x-ray-emissions-from-uranus-are-detected-for-the-first-time/


https://scitechdaily.com/ghostly-boson-clouds-could-solve-the-mystery-of-dark-matter/


https://theconversation.com/ai-can-reliably-spot-molecules-on-exoplanets-and-might-one-day-even-discover-new-laws-of-physics-172701


https://en.wikipedia.org/wiki/Exotic_star


https://en.wikipedia.org/wiki/Quark_star


https://en.wikipedia.org/wiki/Standard_Model


Image 1)https://scitechdaily.com/ghostly-boson-clouds-could-solve-the-mystery-of-dark-matter/


Image 2)https://en.wikipedia.org/wiki/Standard_Model


Image 3)https://awsimages.detik.net.id/visual/2015/08/15/4fbf27d9-ead2-4c98-b31d-44fe0dff7bbc_169.jpg?w=650


https://thoughtsaboutsuperpositions.blogspot.com/

Monday, November 29, 2021

There is a first time seen neutrinos in the LHC.

  

 There is a first time seen neutrinos in the LHC.



LHC (Large Hadron Collider) particle accelerator in CERN has first time detected neutrinos. Neutrinos are mysterious "almost like photon" particles. The thing that makes this observation special is that those neutrinos seem to be produced in LHC. 

And that thing is one of the most interesting things in history. This observation tells that production of synthetic neutrinos is possible. The large and powerful particle accelerators are used to accelerate particles to extremely high speed, and an attempt is to make them collide with neutrinos. 

The idea of those tests is to close the neutrino inside the particles like hadrons. If hadrons or shaper saying, baryon (proton) can close neutrino in its structure. That can make it possible to capture neutrinos between quarks. 

The thing that makes neutrinos special, is that the neutrino can travel through the planet without any kinds of interactions. That makes neutrinos special, and the fact is neutrino would be an extremely good tool for long-range quantum communication. But that thing requires the ability to produce synthetic neutrinos. The thing is that making this kind of process requires so powerful energy loads that they are not economic. 

But maybe in the future, the small-size fusion and thorium reactors. Are making it possible to equip all quantum computers with nuclear reactors. 

But that thing requires that the neutrino can be produced, trapped, and turn into a qubit. The problem is that neutrinos are located only in nature, and the possibility to make "synthetic" neutrinos is one of the most fascinating possibilities in history. 


https://scitechdaily.com/for-the-first-time-ever-physicists-detect-signs-of-neutrinos-at-large-hadron-collider/

Image: https://scitechdaily.com/for-the-first-time-ever-physicists-detect-signs-of-neutrinos-at-large-hadron-collider/




The interaction between hadrons

The next part of the text is connected with neutrinos because it handles the hadron interactions. The phi meson is interacting with the baryon proton. And that thing will open the new road to particle physics. The hadrons are particle groups that are acting like one particle. 

And that interaction between baryonic hadron and mesonic hadron. Is opening the road to understanding how the atoms and material are forming. What is the interaction that drives quarks to those formations that are called protons and neutrons?

The baryonic hadrons protons. And neutrons are forming most of the atoms. And the question is how quarks are forming those particles. One of the most fascinating questions in the universe is can also mesons form stable structures like protons and neutrons are forming. The thing is that this should be possible with all hadrons. But only stable formations atoms are formed of protons and neutrons. 


https://scitechdaily.com/cerns-alice-detector-takes-the-next-step-in-understanding-the-interaction-between-hadrons/


https://en.wikipedia.org/wiki/Hadron


https://en.wikipedia.org/wiki/Phi_meson


Image:https://en.wikipedia.org/wiki/Hadron


https://thoughtsaboutsuperpositions.blogspot.com/


Wednesday, November 24, 2021

Can other universes form of dark matter?

   

 Can other universes form of dark matter? 




The image above: The Hubble image of the Hourglass Nebula. Was the Big Bang look like this?


What makes material visible? The answer is reflection. But also the expansion of the universe causes an effect that wave movement and photons would start to transfer out of material faster. The energy would travel from the higher energetic areas to the area where is a lower energy level. 

The material is visible only if photons are traveling away from it. If the material is lower energetic than its environment. That is causing a situation that energy travels in the material. And that turns material to shadow. 

And that causes that the energy level of the material turns lower and the material is turn to wave movement. When the universe expands, the quantum fields inside it turn weaker. 

And if we could make material where quarks and other particles are a different size than the visible material that thing would be invisible to us. The reason for that is the reflection from that material would have a different wavelength than visible material. 

The idea of the multiverse or parallel universe is not dead. The origin of the theory is in the supernova explosions. There the material is released to the poles of the star. And because mainly the radiation is leaving from black holes from its poles. There is the possibility that the Big Bang erupted material like an hourglass. 

So that thing has caused a theory that during the Big Bang formed two universes. The material and antimatter universes. Then there is the possibility that those universes collapsed causing the antimatter-matter annihilation. That formed the universe. 

But we are not sure about that thing. The idea is that the great annihilation reaction happened between subatomic particles. And at that point. The hadron-baryon particles, like protons and neutrons, were not formed yet. But there is also the possibility that this so-called antimatter universe would be stable. 

Is the invisible material possible? The fact is dark matter is one of the examples of an invisible material that interacts only by gravitation. The thing is that if we want to observe another universe. There is one term that the universe must fill. And that is the size of particles that are forming that other universe. Must be the same size what they are in our universe. 

If the particles that form another universe are a different size than particles in our universe are. They would send reflections on what we cannot observe. Which means another universe would be invisible to us. That means the hypothetical other universes could be invisible to us. 

In the same way, if we would were the creatures that live in that another universe. We would not see this universe. There would be an empty bubble in the place of our universe if we would be aliens in that another universe. 

If we think that somewhere in our universe would form another universe. The particles in that universe would be a different size than particles in our universe. And that thing means that the young universe would be invisible to us. We would see only the empty area in the place where that universe would be. 

But then we can think about the expansion of the universe. When the universe was born, it was very small. And everything in it was smaller. The particles that were in the young universe were smaller than the particles of the universe, where we are living. 

And there is the possibility that we would not observe the particles of the young universe at all. The reason for that was the young universe's particles' quantum fields were smaller than the material that forms the universe today. 

The thing that makes the material visible is the reflection. When energy hits the particles' quantum field it turns over-energetic. And getting the energy balance between the particle and outer universe is simple. The particle sends the photon and that thing stabilizes the energy level. 


When the universe is expanding the energy level inside it will get lower. And that thing will pull the photons out of material. 


But when the universe expands that thing would make the quantum fields inside it lower energetic. When the universe expands, the particles release their energy as photons and wave movement. And that is the reason why there are no absolute zero kelvin degrees anywhere else than in laboratories. 

Pressing the minimum energy level of material with high pressure is possible to make the 50% invisible structures. The reason why the material can be visible is that the quantum field around it will turn weaker. And that thing pulls the photons out from the material. 


But what if the weakening of the quantum field around the particles caused because of the expansion of the universe would deny or compensate by pumping energy to the particles. The energy should be at the same level that the expansion of the universe will remove around it. And that thing can make it possible to make the 100% invisible material that is impossible to see. 


https://scitechdaily.com/magnetene-a-graphene-like-2d-material-leverages-quantum-effects-to-achieve-ultra-low-friction/


https://scitechdaily.com/mit-physicists-use-fundamental-atomic-property-to-turn-matter-invisible/


https://en.wikipedia.org/wiki/Antimatter


https://en.wikipedia.org/wiki/Big_Bang


https://en.wikipedia.org/wiki/Cosmic_microwave_background


https://en.wikipedia.org/wiki/Dark_matter


https://en.wikipedia.org/wiki/Multiverse


Image: https://www.jpl.nasa.gov/images/hubble-finds-an-hourglass-nebula-around-a-dying-star


https://thoughtsaboutsuperpositions.blogspot.com/


Sunday, October 24, 2021

The anomalies in LHC (Large Hadron Collider) can have many interesting reasons.



The image I)"A TYPICAL LHCB EVENT FULLY RECONSTRUCTED. PARTICLES IDENTIFIED AS PIONS, KAON, ETC. ARE SHOWN IN DIFFERENT COLORS. CREDIT: CERN, LHCB COLLABORATION

Typical LHCb Event Fully Reconstructed"(https://scitechdaily.com/new-fundamental-physics-unexplainable-phenomena-from-large-hadron-collider-experiment/)

Many fascinating possibilities can cause anomalies in the LHC and other particle accelerators. One of them is the fifth force. But there is the possibility. That behind those anomalies is some kind of energy interaction. There is the possibility that particle is hitting with dark matter particles. 

Or the reason for the anomaly is the interaction between the particle and some higher dimension. When people are talking about higher dimensions they are forgetting something. The dimension could be the energy level where the space is filled with the wave movement that has a certain wavelength that depends on the energy level. 

There is the possibility that the higher dimension is the energy level that transforms particles that we cannot receive the radiation that they are sending. 

So could the higher dimension be the energy level where wave movement is even shorter than gamma-rays? When the energy level of material or wave movement rises higher than gamma-rays we couldn't see that radiation. The gamma-rays are the limit for the observable area of the electromagnetic spectrum. But there is the possibility that the energy level of radiation rises higher than gamma-rays. And that means radiation slides outside the electromagnetic spectrum. 

So the higher dimension could be the energy level of material that sends more high-energetic radiation than gamma-ray. And when the energy level is rising enough the energy level of radiation turns higher and wavelength shorter than gamma-rays. So the electromagnetic wavelength slides out from the visible spectrum. And the gamma-rays are the limit of the radiation that we can see. 

But the energy of radiation can be much higher than the energy level of gamma-rays. When we are thinking the case that the energy level of material is rising high enough that means the size of the quarks is turning so different than the size of other quarks. That means it starts to send the wave movement that has no contact with the material that we can see. 



Image II. Electromagnetic spectrum


So if there is no fifth force. There is the possibility that the particles are impacting with some unknown quantum field. Or some extraordinary gravitational effect is causing the anomaly.  But what can cause that gravitational effect? 

When we are thinking that the source of dark energy is in the interaction of dark matter. That thing causes interesting ideas. There only interaction between visible and dark matter is gravitational interaction. But dark matter is "only" material and the reason why we cannot see it is that it sends reflection what we cannot observe. 

Is dark energy the wave movement that dark matter releases when it attempts to ger the base level of energy? Dark matter is similar material with visible material. And its particles should behave a similar way with visible material. 

When they are facing energy stress, that thing means that the energy level of dark matter particles is rising. And then they will release extra energy away as the visible material. They are sending the wave movement when they are returning to the base level. 

But black holes are pulling dark matter inside them the same way as they are pulling visible material. When the dark matter is dropping behind the event horizon. Its energy is rising similarly with the visible material. And that means dark matter is sending the radiation with a wavelength that we cannot see. But that radiation is interacting with other dark matter particles. 

Dark matter particles are similar materials to visible particles. When they drop to a black hole their energy level is rising. And that thing sends the wave movement that raises the energy level of the other dark matter particles. The dark matter particles are the same way deliver the extra energy like visible material. That thing happens the same way. 

Particles are the sending the extra energy in the form of wave movement. The reason for that is that all material is attempting to reach the base level of energy.  

Theoretically, there is the possibility that the dark matter particles impact. And those impacts are sending radiation that is invisible to us. The reason why I believe so is that dark matter is only material that we cannot see. There is the possibility that the dark matter particles are making a similar whirl around the black hole with the visible material. And that whirl causes the friction between the dark material particles. 


https://science.nasa.gov/astrophysics/focus-areas/what-is-dark-energy

https://scitechdaily.com/new-fundamental-physics-unexplainable-phenomena-from-large-hadron-collider-experiment/

https://www.space.com/20930-dark-matter.html


https://webelieveinabrightfuture.blogspot.com/

Thursday, October 21, 2021

Newton's fractal and the origin of the universe



Above this text is the so-called "Newton's fractal". And now you might ask, what connections with some fractal has with the universe. The fractal is the geometrical form that is repeating forever. And if we can make the right fractal we could make the model of the entire universe. So if we could make the model of the galaxies or interplanetary nebulas. That means we could make the model of the direction of the energy flow. 

Or if that thing is not possible. We could make a model of how the galaxies and universe are advancing. Also, the fractals can be used for modeling weather or movements of gas masses in the atmosphere. But the more accurate models can make by using extremely large gas masses like entire galaxies. When the mass of the gas is rising. The accuracy of predictions of the movement of that gas is rising. 

But could "Newton's fractal" be the calculation that models the origin of the universe? That is a coincidence.

 But it's an interesting coincidence. Newton didn't know anything about this fractal. And still, that is giving many ideas about the origin of the material. 

When we are looking at that fractal there is the shape that seems coming from one point. There are two crossing forms. And that thing brings to my mind that could the origin of the universe be the two crossing wave movement areas?

Maybe, in the beginning, was formed expanding quantum field. That pushed the wave to move away from the point where it formed. And that thing caused the Big Bang. 

 In that scenario, the crossing wave movement turned to a "ball-shaped form", but what kind of wave movement it was? The wave movement before the universe or material entirety that we call the universe formed was not a waving movement. It was a straight moving wave movement. Those energy lines crossed and that caused the detonation. Sir Roger Penrose noticed that the black holes brought radiation from the ancient universes. And maybe that wave movement was coming from the universe that was gone. 

But what was the origin of the crossing wave movement? The simplest answer is that came from another dead universe. The wave-particle duality means that the material is particles but also they have wave movement form. Sharply saying protons and neutrons are part of the subgroup of hadrons called baryons. They are a group of quarks and gluons. So they are particle groups. 

There is one thing that we must remember. The wave-particle duality means that only elementary particles can change their form between particle and wave movement. So quarks, electrons, and other subatomic particles can turn to wave movement. But the quantum groups like protons and neutrons cannot do that thing. 

So if we want to send a qubit through the black hole we must try to make it by using quarks or electrons for that thing. The requirement is that the information could return.  Is that the form of the transmitter can return to its original form. And the elementary particles will not break when they are falling across the event horizon. The idea that a black hole crushes information includes many theories. But one is that the gravitation will break the protons and neutrons. In another version when the particles are coming out from the hypothetical wormhole. They are slowing. And that thing crushes the information. 

The hadrons like protons and neutrons are not like "balls" they might look a little bit like small bags where are balls inside them. Those "balls" are quarks". Or maybe if we are increasing accuracy that thing causes that we might see that even the quarks are not balls. They might look like waves if we are using enough high accuracy.

If we are looking at the impact theory where two crossing wave movements caused the reaction called Big Bang the wave-particle duality turned those wave movements to the material. Quarks were the first stable particles in the universe. Or the very first particles might be Higgs bosons or some even more high-energetic particles. 


https://en.wikipedia.org/wiki/Baryon


https://en.wikipedia.org/wiki/Elementary_particle


https://en.wikipedia.org/wiki/Hadron


https://en.wikipedia.org/wiki/Wave%E2%80%93particle_duality

Tuesday, October 12, 2021

The exotic particles can form near supermassive black holes.


There are two types of radiation near black holes. The radiation comes from the transition disk around the black hole. And the radiation that comes from the black hole itself. The form of the Hawking radiation is in the oscillation of a black hole. 

When the black hole oscillates it sends the electromagnetic wave through the universe. The form of Hawking radiation is similar to other radiation. When a black hole rotates or turning smaller it sends wave movement to the universe. And also sometimes photons are slipping out from the black hole. And those interactions are the origin of Hawking radiation. 

The conditions near supermassive and other black holes are extreme. 

Near the black hole photons and electromagnetic waves are orbiting the event horizon. But also other particles like ions and electrons are moving around that object. 

The transition disk around the black hole together with Hawking radiation affects everything that is falling in the black hole and when that high-energetic radiation hits particles. And the wave movement that is falling black hole. That thing causes that the wave-particle to form photons and other particles they are starting to push that radiation or wave movement at the front of them.

Some conditions are possible only near black holes. At the point of the event horizon also other particles than photons can reach the speed of light. And that thing is making the black holes so unique that these kinds of things are hard to understand. When we are saying that black holes are destroying information we mean that it pulls the wave movement straight. But also the particles that are orbiting that monster are destroying information. When a particle is coming near a black hole it would pull in the whirl that surrounds the black hole by the gravitation. 

In that case, the particle will face extremely powerful radiation stress. And that radiation increases its mass. But also there is the possibility that the angle of the falling particle is about 90 degrees. When it hits the whirl. That means that the high-energetic particles are hitting each other. In those situations, things like electrons can hit together because the kinetic energy of those particles is so high that electromagnetic forces cannot change their trajectory before impact. 


Other black holes are orbiting the major black holes. The reason for that is that the high-energetic radiation that comes out from the black hole and especially from the transition disk is turning material too energetic. 


https://physicsworld.com/a/mellow-supermassive-black-holes-could-be-creating-mysterious-cosmic-particles/


https://en.wikipedia.org/wiki/Hawking_radiation


https://kimmoswritings.blogspot.com/

Friday, October 8, 2021

Material is wave movement and particles at the same time.




The wave-particle duality means that material is the same time wave movement and particle. The actual form of the subatomic particles is a mystery. But it can be like a yarn ball. The other explanation of the form of the material could be that the material is forming the straight wave movement which is creased together and forms the form. 

That looks like the ball. But carefully looking that ball is not the ball. So was the origin of the material in the big bang when the particles pulled themselves off the wave movement? When the superstring is forming material. During creasing wave movement creasing that can happen by ripping the ends of the superstring off the wave movement. 

Is photon or any other particle, particle, or wave movement? Or is the form of the particles ball or is it something else? The fact is that the tiniest particles of material are both wave movement and particles. At the same time. The form of those tiniest particles and photons is not probably like a yarn ball at all. The thing that makes me believe is that the actual form of the photon and other subatomic particles like quarks is the creased wave rather than the ball. Because of that form of simpler than the yarn ball. 

The thing seems like the packed curves rather than some kind of yarn ball. The quantum field will press the wave movement together forming the structure that might look like a ball if we are seeing that thing from outside. If the subatomic particles are like the superstrings. the oscillation of the superstring would explain why the material sometimes loses photons. The photon is releasing when the string is moving in. 

Then we must realize that the annihilation reaction between the material and antimatter particles is like two superstrings are moving against each other. When those superstrings are near each other they would jump to each other. And that means annihilation. So the particles in the quantum world are not like balls. They are oscillating and their place is impossible to calculate. 

https://kimmoswritings.blogspot.com/

Navier-Stokes equation can revolutionize engine design.

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