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Researchers may find the wormhole. But they cannot recognize it.




There are three main requirements for stable wormholes.


*The black holes must superposition and make quantum entanglement between them. 


*Energy level between those black holes must be different. If one black hole is at a higher energy level than the other that makes energy flow in a wormhole possible. 


*And the energy level of energy that travels in the wormhole must be higher than its environment. The coherent wave motion inside the wormhole keeps it open. 


The wormhole is open until the wave motion that comes outside breaks it. This is why stable wormholes are possible only between two black holes. 





Image II Cosmic web

Could dark matter be material that travels in wormholes? And could wormholes form the cosmic web? 


Could the wormholes be the effect behind the cosmic web? In some theories, the so-called cosmic web is forming around wormholes. And there is the possibility that dark matter is matter that travels in wormholes. Because wormholes isolate material that travels in it. This makes the material invisible to us. 


The black hole itself is the wormhole or time loop.


The black hole itself is the wormhole or time loop. The reason for that is that the escaping velocity in that object is higher than the speed of light. And because the dropping speed of the material is the same as with escaping velocity. When the speed of the particle reaches the speed of light time stops. And when escaping velocity turns higher than the speed of light the time should turn to travel backward.  And when material drops in a black hole it should come out from the point in spacetime where the black hole formed. 



It's possible that researchers just don't recognize the wormhole. 


There is a possibility that the first wormhole or Einstein-Rose bridge has already been found, but researchers don't recognize it. That could be one version of the problem in science. There are lots of phenomena that exist, but confirmation of those things is difficult. And until researchers get confirmation the thing is theoretical. 

The shape of the wormhole is simple. Its two superpositioned and entangled black holes. So it's the extreme version of quantum entanglement. And the next question is: can information travel in a wormhole? 

The answer is yes. The requirement that information can travel in a wormhole is that another side of the quantum entanglement is at a higher energy level than the other. And the wormhole is one of the quantum entanglement. 

The thing that keeps the wormhole open is the energy that travels inside it. If the outside energy causes the collapse of the wormhole that requires that outcoming energy has a higher level. 

And also another side of the wormhole must be at a higher energy level. If the energy level of both black holes is the same that causes the impact of the wave motion in the middle of that energy channel. And that destroys the quantum entanglement. 

We know that wormhole is possible. Laser and maser rays are energy channels through the universe. 

They are electromagnetic wormholes. The wormhole is the channel where is no crossing electromagnetic wave motion. 

Or that wave motion is coherent. So if an object travels in a wormhole it rides with that wave motion. The thing that makes wormholes possible is the electromagnetic tornado. The wave motion closes the channel inside it. And that electromagnetic tornado denies the outcoming wave motion's effect on that channel. Then wave motion that travels in that channel keeps it open. 

The reason why stable wormholes can form only between two black holes is that black holes are the highest energy objects in the universe. If we think that wormhole collapses because of outcoming energy the energy level of that radiation must be higher than the energy level of the radiation or wave motion that keeps the wormhole open. If that energy level is lower. It causes the collapse of the wormhole. 


 https://www.livescience.com/63847-facts-about-the-milky-way.html


https://www.sciencealert.com/wormholes-may-already-have-been-detected-physicists-say



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