Thursday, July 22, 2021

How material behaves when it is dropping in the black hole?



The new mathematical models are proving that photons are not falling with straight trajectories to the nucleus of the black hole. The photon whirl is possible only around supermassive objects because that thing requires that the photons can not escape from the area. But the photon whirl is causing an interesting idea. 

Can the planets or some objects that have regular gravity fields curve the trajectory of photons to a similar form with the black hole? So when the photons are orbiting the nucleus of the black hole that whirl can cause that the black hole seems black. When photons are orbiting the center of the black hole they are making a similar effect with a sonic whirl. 

When photons are traveling at a speed that is higher than the speed of light are forming a similar whirl with air molecules. That thing denies that the radiation can travel through that core. The black hole is black because the radiation cannot come outside the area, where the escaping velocity is higher than the speed of light. The black holes are surrounding by the shining ring, where are electrons and other particles. But can a black hole curve the trajectory of photons so much, that they are orbiting it outside the event horizon? 

But photon whirl is one of the most outstanding things in the world. There are also many other particles than photons in the universe. Some of those particles are orbiting the event horizon. Those particles are traveling slower than photons. So the whirl of those particles is visible and it orbits the event horizon of the black hole.

That means those particles like neutrons, protons, and electrons are denying seeing the event horizon itself. Also, those particles are whirling around the nucleus of the black hole. So that means information that drops in the black hole can crush by those particles. 

Increasing the speed of exhaust gas to higher than the speed of light is easy. The exhaust gas of the rocket can shoot to the black hole.  The problem is that we must position the nozzle of the engine inside the black hole. The nozzle must go through the event horizon. The reason for that is that the exhaust gas must not separate away from the rocket. And crossing the speed of light in the case of the black hole happens only at the point of the event horizon.  

One of the most interesting things about black holes is that somebody has introduced that the exhaust gas of the rocket engine is aimed at a black hole. The gravity field of the black hole will accelerate the exhaust gas to a speed that is higher than the speed of light. 

The problem is that the nozzle of the rocket engine should be inside the black hole.  The nanotechnology where the extremely small quantum channel there is the extremely small black hole at the end of that tube can someday answer that problem. 


https://www.sciencealert.com/we-now-have-precise-maths-to-describe-how-black-holes-reflect-the-universe

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