Showing posts with label whirl. Show all posts
Showing posts with label whirl. Show all posts

Tuesday, April 7, 2026

Could gravity waves form dark matter?



"Faint gravitational waves from the universe’s infancy may hold clues to how dark matter first formed. Credit: Shutterstock" (ScitechDaily, New Study Suggests Gravitational Waves May Have Created Dark Matter) 

If dark matter is whirling in quantum fields. Because. Of. Impacting gravity waves. That means dark matter is a virtual matter. The idea is that. Impacting gravitational. Or gravity fields form similar whirls. In their impact. Point as air flows. 

 The idea is that whirls in quantum fields can act like virtual particles. Those whirls form around the lower energy quantum field. Those whirls put energy or quantum field into motion. They act. In the same way as tornadoes and hurricanes act in the atmosphere. Moving structures bind energy, and that makes those structures lower energy than their environment. Those structures transport energy away from the point where they are. This makes those whirls or their wall seem cold. But. The energy or wave movement can travel into that whirl. So, only the wall of the whirl is the structure that binds energy. And that structure forms more whirls in the impact area. 

Could dark matter simply be whirl in quantum fields? If there is a whirl in the quantum field, that whirl can theoretically form the “Kugelblitz black hole”. Or a black hole that forms because of radiation. There is a possibility that if something emits a very high-energy radiation. Into a single photon. That thing can turn a photon into a black hole. The idea is that when that photon receives energy. Sooner or later, it releases it. When a photon sends energy. It forms a quantum void. Then, outside energy starts to fill that bubble. If that bubble is fully symmetrical, it pumps energy to that photon. 

A photon stores that energy into its spinning movement. And then. If a photon cannot transport energy out from it through the whirl, it turns into a black hole. The mass and energy in the photon rise until it can release that energy. The speed of the spin accelerates until the photon can release that energy. 

The falling quantum field turns that photon into a black hole if it is collected from an area that is large enough that the energy level in the photon rises so high that it turns into a black hole. When that happens. The photon must form so large whirls around it. It cannot remove its energy through that whirl. The spinning speed of the photon accelerates. When that whirl transports energy into it. 

So could the whirl in the quantum field explain dark matter? Theoretically, this kind of quantum spin can turn into a black hole in a similar way as a photon in the theoretical “Kugelblitz” black hole model. 

In this text, I will repeat the word “whirl”. The idea is that the dark matter could be the whirl in the quantum field. When a quantum field moves, it forms a series of whirls in the impact point. This means all particles can be surrounded by whirls. In the same way, when quantum fields impact other quantum fields. Their form whirls in the impact layer. This means that. Also, macro-scale quantum fields form whirls at the point. There those. Traveling quantum fields touch other quantum fields. In some cases, the whirl can be separated from the point where it is born. 

This thing happens. In the rivers, so if we transfer that model to the quantum environment. The whirl around the gravitational center can also be separated and form the traveling whirl that acts like a gravitational center or particle. We can think that the high-power energy strike hits the particle.  That energy spins a particle, and that forms the quantum tornado. This quantum tornado can form a low-energy point. That accumulates quantum fields that try to fill it. 

The gravitational centers are surrounded by whirls. The whirls are matter that travels to the center of gravity. Whirl is never alone. On the borderline of a whirl, that thing forms smaller whirls. So, if we think that gravitational fields are forming quantum whirls, then that thing can form a phenomenon that looks like material. 



Jupiter’s clouds. The idea is that impacting quantum fields, including gravity, can form similar whirls in the impact point. There, the traveling field impacts and speed of those impacting fields, or their direction is opposite. We can see how impact points between clouds form whirls. 

And we can transform that model into the quantum fields, including gravity. When two gravity fields impact, they form similar whirls. And those whirls pack quantum fields into them. So, if that whirl model is real, those whirls in the quantum field can pack matter or energy into them. 

When we consider cases, there are quantum fields that impact and form whirls. The walls of those quantum whirls are pulling energy out from the middle of the whirls. And that causes a situation where quantum fields travel to those quantum whirls. When a gravitational wave travels. All over the universe, it also has an impact point.

When we look at an image of Jupiter’s clouds, we see whirls. In the same way, gravitational waves can form whirls. The whirls in the impact layer of the quantum fields. If that kind of quantum whirls. Surrounding the impact layer of the universe, which explains why we cannot see other universes. Also, we can think. The whirl around the particles is forming a series of whirls in the quantum field. So, that means quantum strings can also be like extremely thin quantum tornadoes. The spinning structure binds quantum fields from their environment. And that can make those structures act. Like they are material. 


https://en.wikipedia.org/wiki/Kugelblitz_(astrophysics)

Tuesday, February 15, 2022

What is inside black holes?

 

Physicists used quantum computers and holographic duality for making simulations of what is inside the black hole? The answer is that there is energy and material. But what is the form of material is a mystery. That thing can be some kind of wave movement. Or it can be quark-gluon mass or something that we don't know. 

The fact is that there is possible that a black hole is like a yarn ball behind the event horizon. That means information or particles are stretching to serpentine-looking forms. Or the massive gravitation rips particles to the wave movement. The question is does that kind of black hole destroy information? The fact is that if the object tries to cross the yarn ball looking whirl. That whirl crushes information immediately. 

But if an object travels inside that wave movement by riding it. That means the object would flow in the same direction with the wave movement it travels at the same speed with wave movement in the middle of it. So the object acts like a canoe that lowers the river. If the canoe would just ride with the flow it would not crush. But if it will travel sideways the river will crush it. The thing is that if the object rides with the whirl and follows its direction. 

That means the wave movement can push the object together. But sometimes is introduced a very interesting question: Is reality a hologram? The answer is yes and no. The scattering effect means the particles that are jumping across the universe are cause and effect. That is similar to a hologram. But we cannot see the material itself. We can see the photons that are reflected from atoms and their quantum fields. 

We always see material and the universe differently and a little bit differently than it is. But the thing is that most of the radiation is invisible to us. That means there are lots of things that we cannot even see. They are sending reflection radiation that is invisible to us. Dark matter is one of the most interesting things in the universe. 

The fact is that dark matter is the matter that is not interacting. If it exists. There is the possibility that some part of the dark matter is material trapped in black holes. That means that black holes would be only heavier than researchers calculated. 

The whirl of material and wave movement around the black hole is on an extremely high energy level because friction and kinetic energy are turning that material to a high energy level. That thing increases the weight of the material that travels in the transition disk. 

And the gravitational effect outside the system where is singularity, event horizon, and the whirls or halo around that black hole. Outside that system the gravitational effect of those areas is common. Even if the black hole or sphere inside the event horizon is dominating. All parts of the system are important.


https://scitechdaily.com/whats-inside-a-black-hole-physicist-probes-holographic-duality-with-quantum-computing-to-find-out/ 


https://thoughtsaboutsuperpositions.blogspot.com/

Tuesday, September 28, 2021

Are gravitons the quantum-size black holes?

Image: Pinterest


What if the hypothetical graviton is the quantum-size black hole? That might mean nothing at the first. But that thing could open new roads to physics and information technology. The quantum-size black holes are the predicted things that are not confirmed yet. 

If we think that the black hole is the simple structure that just pulls particles and information inside it. We are wrong. The radiation that comes out from the transition disk and whirls around that thing is causing that the black hole would also repel objects. 


Maybe someday in the future, the quantum black holes are transmitting information in an ultra-secure quantum network. 


The radiation around that object pushes all other objects away from it. Gravity is the dominating force of the black hole but also the radiation has a very big role in that system. So the radiation that comes from the material around the black hole would destroy information as well as dropping it to the black hole does. The thing that destroys the information in the black hole could be that it pulls wave movement to straight form. And that makes it impossible to return it to the original shape. 

But the extremely small black holes can be used as a communication tool by superpositioning them. The superpositioned and entangled black holes would transmit data by moving their place in the chambers. But there is the possibility that the qubits can transport through those black holes or their radiation can be used as the carrier wave. 

In that case, the laser would transmit data to the energy ray of the atom-size black hole. but using that phenomenon requires that the atom-size black holes can be proven and observe. Before that everything is just speculation. 


Can we someday use black holes for interstellar traveling?


The most conventional version is to use the black holes as the gravitation sling. The craft would travel near the black hole by using a half-elliptic trajectory and the black hole would give the gravitation punch for the spacecraft. Also, things like solar sails can use black holes as the power source. 


The antigravitation by hovering craft over the radiation pillars of very small black holes is an interesting theorem. 


If the graviton is the quantum black hole that thing makes the antigravitational levitation possible. The extremely small black holes would be position between the ground and the craft and the radiation pillars are pulling that craft upwards. In that system, the radiation of the micro black holes can use to levitate the object. 

The original idea of that thing was that the spacecraft of tomorrow could someday use the radiation rays of the black hole for giving the punch for its travel. The system that collects the energy of the radiation would be similar to the solar sail.  

And the thing that will the energy is the radiation of the black hole. This means that black holes could benefit otherwise than just dive in the wormhole. 

Can we someday use wormholes (Einstein-Rose Bridges) as the interstellar travel? The real wormhole is a speculative thing. The virtual wormhole is the case where the core of the interstellar spacecraft will put to rotate near the speed of light. And that thing would make that the crew would not be getting older so fast like outside it. 


There are two theoretical models of the wormhole. Those models are a real wormhole and a virtual wormhole. 


The existence of a "real wormhole" is not confirmed yet. The virtual wormhole is made by using a rotating structure wich speed is so close to the speed of light as possible is theoretically possible to make. The system would be like a giant electric- or induction engine. The magnetic field would rotate the outer layer around the crew cabin. And that causes the time dilation inside the structure. 

The hypothetical real wormhole is the radiation channel that would allow the craft to travel between two objects in seconds. In a virtual wormhole, the time dilation that is made by using the rotating core of the spacecraft causes time dilation. And that slows the aging of the crew. 

In a real (hypothetical) wormhole which is the energy channel, the radiation can kill the living astronauts. But the answer for the radiation could be the jammer system. That jammer pushes the radiation away from the core of the spacecraft. 

Then we must realize that there is the possibility that the living organisms ever travel through the wormhole. But artificial robots can make that journey. So maybe robot spacecraft can travel through a wormhole and transmit data through that thing by using superpositioned and entangled particle pairs. 

The difference between real and virtual wormholes is that in the case of a real wormhole the observer sees that the craft would travel through that energy bridge in seconds. In the virtual wormhole, the outside observer would not see the time dilation that affects only the things that are inside the craft. 

In the virtual wormhole, the time is stopped inside the spacecraft by using rotating structures. The idea is that the crew cabin hovers in the fast rotating magnetic chamber. The time dilation means that the time is moving very slowly in the capsule. But outside observer sees that the craft travels to as an example to Alpha Centauri in eight years if the speed of the craft is about 50% of the speed of light. 

At the last, I must say that even if the single qubit can travel through the wormhole. That doesn't mean that the entire spacecraft can do that thing. But things like wormholes are an interesting thing. And we can use them in some way. 



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


()https://en.wikipedia.org/wiki/Micro_black_hole


()https://en.wikipedia.org/wiki/Wormhole


()https://kimmoswritings.blogspot.com/


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