Could white holes exist, and why can't we see them? Mathematically, white holes or anti-black holes exist, but they are extremely unstable. The thing is that the white hole might misunderstand some of those visions. A white hole is theoretically the opposite of a black hole. It's the point where the material comes out of the wormhole that is the quantum energy channel through spacetime. The white hole has singularity, as well as black holes, do, but the white hole acts oppositely to black holes.
Time dilation stops time at the point of the white hole. That means we can only see flashes, and then we would travel through that thing in time. So when particles come out of the wormhole, they release their extra energy as a shockwave that we can see as a flash.
"White holes are theoretical cosmic regions that function in an opposite way to black holes. (Image credit: Future/Adam Smith)" (Space.com/Could white holes actually exist?)
(Space.com/Could white holes actually exist?)
The idea of a wormhole is that there is a quantum tornado in space. And there is a quantum vacuum ahead of objects that travel in that "tube". That means all particles, including photons, travel at the same speed in that strange phenomenon called a wormhole or Einstein-Rose bridge. Wormholes follow the principle of quantum entanglement. And information can travel through those energy bridges only if one side is at a higher energy level than the other.
The white hole pushes material away from the hole, and the point where the speed of that material that travels in a wormhole decreases below the speed of light is the point where the wormhole ends. So at that point, the matter again reaches the speed of light. And the thing is that time is also frozen at the point of the white hole.
If we think that time is a river, a white hole is like a stone in that river. A river called time takes all matter with it. And we can see that stone only once. And maybe the flash of the supernova is the moment when a white hole opens in spacetime. And that means we could see that thing only once.
The white hole interacts in a similar way as black holes, and at the point where the speed of matter is the speed of light, time is frozen. Time dilation stops time at that moment. When matter comes out of a white hole, it causes a shockwave that is seen as a flash.
So because time is frozen at the end of a wormhole, we might say that white holes are frozen at a certain point in spacetime. So the white hole is in a stable position, but time travels around it. When we think about white holes from the point of view of an observer who stands in a regular universe, the white hole is just a flash in spacetime. That means a white hole exists, but it exists at a certain point in spacetime.
When black holes pull, white holes push. What makes a white hole white? The white color is formed when a material with an extremely high energy level comes out from the wormhole. When the material comes out from that energy tunnel. It releases its energy immediately to spacetime. So the white color of the white hole is the shockwave of energy impulse that is coming out from material that comes from the wormhole.
The reason why we cannot see material that travels in a wormhole is simply that its energy level is too high. And that thing causes the material vanishes. So what happens when the particle is jumping to the fourth dimension? When the energy level of the particle is high enough its shape transforms and it disappears.
What drops particles away from the fourth dimension?
When the energy level of the particle decreases. It falls back to the third dimension. And in that process material (or particles and wave movement or information) releases its extra energy. The reason why it is so hard to jump to the fourth dimension is simple. Normally particle or wave movement cannot reach the necessary energy level.
As I wrote before, the dimension is like a room. The roof is the highest possible energy level of the particle. If the particle should jump to a higher dimension it should go through that roof. But the problem is that energy is like the pillar under the particle. It can reach the roof quite easily. But for traveling through the roof. It needs extra energy from the upper room.
The jump to the fourth dimension happens through quantum entanglement. The quantum entanglement forms between the particle with the lowest energy level in the fourth dimension and the particle that is the highest possible energy level in the third dimension. That means if the energy level of the particle is changing it jumps out from the third dimension or drops out from the fourth dimension.
When the particle in the fourth dimension pumps energy to the particle in the lower dimension. It reaches the energy level. That is high enough to jump out from the third dimension. The idea is that the particle in the fourth dimension pumps energy to lower energy particles. But it loses its energy in that process.
But the problem is that the particle that is in the highest energy level in the third dimension takes contact with the particle in the lowest energy level in the fourth dimension. And if that quantum entanglement forms between particles where another part is in the too low energy level it pulls another particle out from the fourth dimension.
The particle can reach the highest possible energy level by using energy that comes from the third dimension. But the thing is that the highest possible energy level means that the particle reaches energy stability. That means the energy would not travel from space to particle.
And then the thing is that particle requires some other particle from the upper room or higher dimension to transmit energy to the lower dimension. The energy flow in superpositioned and entangled particles travels from higher energy levels to lower energy levels. That thing means that the energy flow continues until those two particles have the same energy level.
So in that model, the particle that is in the fourth dimension rises or pulls the other particle from the third dimension to the higher dimension. But why the particle can drop from the fourth dimension? The reason for that is also simple. If the energy level of the particle in the third dimension is too low it would decrease the energy level of the particle so much that it falls from the fourth dimension.
Could dark matter be the particles that are in the fourth dimension?
When we think that the dimension is a certain energy level the particles that are traveling in a wormhole are just invisible. They are existing. But they cannot interact with other particles. The wormhole should go to the point where the radiation pike of the black hole travels.
If that material that travels in that radiation channel sends radiation. There is the possibility that the radiation of that radiation channel covers the radiation that the material inside that energy channel sends. So is a dark matter the matter that travels in a wormhole?
And the question is why is that material that is at too high an energy level that it cannot interact with regular material or third-dimensional material? The answer to that question can be in the spin of the particles. If the particle is smooth it cannot send the wave movement. Or it sends the straight wave movement.
Could the energy that travels out from the particle that is in hyper-high energy level just push other particles away? That thing denies the interaction with other particles.
The thing that causes the effect that makes particles possible to observe is wave movement the energy level changes. If some particle is smooth there are no errors in the wave movement that comes outside it. The thing is that the hair or pikes of the particle are the things that make the particle visible. When that pike will push the outer quantum field it sends the wave movement.
If the particle is hairy it causes the "thunder". That thunder is the wave movement. The fourth dimension could mean that the rotation speed of the particle is so high that it would pull those hairs to its surface. Another thing is that the radiation or wave movement that particle sends turns so high that it pushes other quantum fields away. Those pikes or hair of the particle act like small antennas. They are driving energy out of the particle. Then that particle just pushes other particles away from it.
Hawking radiation part 2 (Is Hawking radiation the energy flow from the black hole to its environment?)
Is the Hawking radiation "only" energy that travels from higher energetic black holes to lower energetic space around them? If that thing is the reason for the expansion of the universe.
That means the vaporization of the black holes continues faster and faster. The energy flow from the black holes to their environment continues until energy balance has been reached. And that requires that the existence of a black hole ends.
The film that you see below this text shows that Hawking radiation is tunneling through the event horizon. But the problem is what is the depth in the black hole behind the event horizon. Where does the Hawking radiation form?
Large black holes are colder than small ones. And that thing supports the idea that the source of Hawking radiation is near the nucleus of the black hole.
If the source of Hawking radiation is near the nucleus of the black hole the energy must travel a long distance from the nucleus to the event horizon than in small-size black holes that are hotter than big ones. So if we are thinking that. The black holes are like onions.
A part of the energy that shines away from them is dropping back to their nucleus. While energy is traveling from the nucleus to the core of a large black hole it must pass more cores than in the case of small black holes.
There is the possibility that the expansion of the universe is causing at least part of Hawking radiation. When the quantum fields around black holes are getting weaker. That will decrease the power of the pressure of the quantum fields. And that causes that energy is transferring from black holes to its environment. That thing happens in the form of wave movement called Hawking radiation.
But there is another theory of that thing.
The thing is that there is the possibility that the event horizon is the point where photons can start to orbit the singularity. Beyond that point, the escaping velocity turns higher than the speed of light. And that means we cannot get any observations behind that point. Or we believed that thing. Before the Hawking radiation has been found.
There is the possibility that the event horizon pulls the photon to wave movement. If that thing happens to whirl photons that are orbiting the nucleus of the black hole. They can turn the event horizons to waving. And that thing causes Hawking radiation.
Or maybe the source of Hawking radiation is the friction between dark matter particles. The black holes are the objects that are pulling both, visible and dark matter in it. So the intensive pressure would cause that dark matter is interacting with visible material.
Does Hawking radiation come from some area before the nucleus of the black hole? Could it source be the white hole behind the event horizon?
Or does it come straight from the nucleus of a black hole? There is a theory that the white hole and wormhole are pairs. The theory is that the wormhole is the channel that takes information out from the black hole. And the white hole is the thing that brings information in the black hole. The theory goes like this.
The wormholes are forming between two black holes that are oscillating with the same frequency. And they are one-way channels through spacetime. That means the wormhole and white hole are always next to each other. The reason why we cannot see the white holes. Is that they are in the event horizons of black holes. So if those white holes would exist near the nucleus of black holes they could send the radiation to the event horizon.
The reason why some people believe. That this is the reason, why Hawking radiation existed. And that means black holes should have an internal structure that looks like an onion. Each layer of onion would be core where the escaping velocity will turn higher.
And that means that if the source of the Hawking radiation is something near the ultimate center of the black hole that thing could cause oscillation that travels from the nucleus of the black hole to the event horizon. That is the most out of the cores of the black hole. The event horizon is the point where the light will drop in the black hole.
But all theories about things that happen behind the event horizon are hypotheses. Confirmation of that kind of theory is difficult because getting straight observations behind the event horizon is impossible.
So the sources of the Hawking radiation are a mystery. It can form inside a black hole or it can form because the event horizon is oscillating. Or it can form when material that comes out from hypothetical white holes inside the event horizon impacts with the event horizon.
The idea of wormhole theory or one of its forms is that the wormholes are forming between the black holes. They would be one-way channels between superpositioned black holes.
And the other would be the channel that takes the information to the other black hole. The other would be the channel that brings information from the other black hole to the first one. So the wormhole that brings material from the other black hole to the first black hole would be the white hole.
So could the source of the powerful X- or gamma-ray pikes of the black hole. Be the white hole that is next to the black hole? Or could the white hole locate inside the event horizon near the nucleus of the black hole?
The Hypothetical model of the location of the wormhole.
(1)<<(2)>>(3)
1) Entry channel to the wormhole
2) Nucleus of black hole
3) White hole (Outcoming channel of the wormhole from another black hole)
Being real that model requires that black holes can be superpositioned and entangled. In the film above this text is introduced a superposition and you might position black holes in the position of particles.
The wormhole is a hypothetical effect or channel where quantum fields are traveling in one direction. That means the black hole will pull those quantum fields to a speed that is higher than the speed of light. And that causes the photons or other things can travel in the wormhole.
Faster than they would travel in the regular universe where quantum fields are slowing them. That means the wormhole would be the tunnel through time and space. The other side of wormholes is a black hole and another is the white hole. If material would try to travel to the white hole. That outcoming radiation will push it away.
And if the material comes out straight from the white hole it would also crush. Because it slows so fast. The thing is nobody has ever seen a white hole yet. And one of the reasons could be that the white holes are the next of the black holes or the entry channels of the wormholes.
So there is the possibility that the entry channels of the wormhole would be. At the next to the nucleus of the black hole. And next to it would be the outcoming channel of the wormhole that brings material from another black hole.