Friday, December 23, 2022

The expansion of black holes. And, the ultimate form of matter. (Quantum rain II)

 The expansion of black holes. And, the ultimate form of matter. (Quantum rain II)



The expansion of black holes means that the size of black holes expands. But their mass is not growing. And that means something inside the black hole pushes the event horizon away from its nucleus. So that means that when a black hole pulls wave motion and particles inside it, that radiation reflects in the middle of the black hole. 

That reflection forms the gravitational shine of a black hole. That shine is the gravitational waves of black holes. And especially lone black holes. So are there some standing gravitational waves or gravitational skyrmions? That are forming whisk-looking structures around the black hole. 

Those skyrmions are the gravitational waves that deny the side-coming gravitational waves that go through them. But when that skyrmion turns away from that gravitational wave motion that travels out from the black hole. It lets gravitational waves travel through it. 

There is a possibility. If the wave motion will travel near the black hole's nucleus it can get enough energy. Back to the universe through the event horizon. That could explain Hawking radiation. If wave motion comes out from the black hole it must release its energy. And maybe that is the explanation for Hawking's radiation.  But the problem is how to prove that thing. 

Hawking's radiation is a mystery. Maybe gravitational waves that come through the event horizon send some other radiation. If a gravitational wave or gravitational string is precisely at the point of the event horizon.

That gravitational string conducts energy out from the black hole. And that energy is the gravitation. When black holes are rotating. Their rotational speed is almost the speed of light. 

That rotational speed creates a massive centripetal force. And that centripetal force pushes gravitational waves out of the black hole. 

The "string" is an extremely thin, energy or wave motion ray. And the QCD (Quantum Chromodynamics) or Schwinger effect means that because particles can turn to wave motion and otherways wave motion can turn to particles. Everything in the universe, including you and me, are wave motion. 

So the thing is that gravitational waves whose energy level is high enough can form a gravitational tornado inside the black hole. And if the energy level of that gravitational tornado is high enough that thing causes the effect where the gravitational field at the poles of the black hole is weaker than other places in the event horizon. 


Particle by particle

"Latent energy (quantum fluctuations) in the fabric of space-time may cause pairs of virtual particles to pop into existence throughout the universe. If such a pair is created right on the event horizon, or the boundary, of a black hole, one particle may fall in while the other barely escapes, taking with it a minuscule amount of energy and therefore mass from the black hole. This theoretical phenomenon is known as Hawking radiation" (https://astronomy.com/magazine/news/2021/02/the-beginning-to-the-end-of-the-universe-how-black-holes-die)

If we think that gravitational interaction is described in the last text "The quantum rain". 

That means there is a standing gravitational wave in the middle of the black hole. That thing transports energy out from the black hole in the form called anti-gravitation. In that model, the anti-gravitation is the reflecting gravitational waves that the standing gravitational wave motion will transport out from the black hole. 

Why in that case the gravitational waves and Hawking radiation can escape from the black hole. The internal structure of a black hole is like an onion. The gravitation acts inside that extremely strong gravitational field like in all other particles. Except the light cannot escape from that object. 

The point where escaping velocity of the black hole reaches the speed of light is called the event horizon. But inside the black hole, the escaping velocity turns stronger and stronger. That means the escaping velocity rises inside that super-heavy object. So the escaping velocity rises to levels 2X, 3X, and 4X... of the speed of light. 

But how can this happen? When the particle or wave motion travels to the gravitational center the speed of the particle or wave motion should slow. In this text, I will call wave motion and particles together as information. 

There is the lower mass of a black hole (or some other ball-shaped gravitational mas center) when information travels inside it. 

So there is less mass left at the front of the information that travels in the black hole when that information travels deeper in that structure. That means when information travels through the black hole the follow-up information pushes the forward traveling information to the center of the black hole. 

And there those superstrings or pieces of wave motion called information impact each other. Those fields can reflect from the nucleus of the black hole. Black holes are the extremely powerful gravitational center. But there is a small point where is no gravitation inside that object.  

With the fast-rotating gravitational field from the 2D structure inside a black hole, there is no gravitation and extremely powerful gravitational energy. So that energy reflects gravitational waves into that structure. That thing forms a gravitational tornado that pushes the other gravitational waves out from it. That thing would form the gamma- or X-ray pike out from the black hole. 

So the internal gravitational tornado of black holes shines. The gravitational shine pushes the event horizon away from black holes. That gravitational shine is the source of the gravitational waves of black holes. 


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


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


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


Images: https://astronomy.com/magazine/news/2021/02/the-beginning-to-the-end-of-the-universe-how-black-holes-die

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