Showing posts with label vacuums. Show all posts
Showing posts with label vacuums. Show all posts

Monday, June 9, 2025

The new way to make quantum computers is at the door.



"Illustration of engineers at Brown University using quantum entanglement to enhance 3D holographic imaging. Image generated by AI." (RudeBaguette, “Quantum Laws Just Got Twisted”: U.S. Engineers Use Entangled Light to Project Mind-Bending 3D Holograms in Real Time)



There are some models where the quantum computer's qubit is a group of false vacuums. The idea is that the qubit can be like an onion. The internal vacuum layers are filled with some quantum fields. Those internal quantum fields form the onion-shaped structure. And when they touch each other that makes them transfer information between those quantum points. Those internal vacuums must be used to minimize non-controlled turbulence in the system. 

The new way to make quantum computers is based on the models where a system "makes light from the vacuum". The fact is that the system does not make light from the vacuum. It simply collects photons in the vacuum, and when there are enough photons, that system enables their use for quantum computing. 

The system can create photons by putting wave movement impact in a vacuum. In that case, the ideal "sterile photon" turns into reality. 

Those photons can become entangled with another photonic field. The system can look like two light pillars. That sends information to each other. That kind of system creates sterile, or clean photons that have a minimum level of artifact information.

And that is a very big advance in quantum technology. The ability to put two holograms into quantum entanglement makes it possible to control photon groups and photonic fields. And that makes it easier to make quantum systems. Traditional quantum systems use single photons that are put in the quantum entanglement. 

The problem is how to separate those photons from the fields.  Photon field quantum entanglement causes the possibility that the quantum computers could also use another field like gravity or quantum gravity as the qubits. 






"Illustration of scientists creating light from empty space by manipulating time and space. Image generated by AI." (RudeBaquette, “Scientists Achieve the Impossible”: Mind-Blowing Breakthrough as Experts Create Light from Empty Space by Manipulating Time and Space)

The idea is that those quantum particles are on a sensor that measures their weight. And the changes in their weight determine the quantum state. 

The system that uses gravity as the computing system can be theoretically possible. The system can use the quantum gravity fields. That crosses at a certain point near those particles. The idea is that the system interacts with quantum particles. The energy pumping adjusts those particle's mass and the system measures those changes. 

When we think about the ability to change information between two fields, researchers must make the quantum points that make the field look like a saw. Information travels between those "hills" and that makes it possible to control that flow. These kinds of systems are interesting. 

And they bring so-called vacuum energy closer to reality. In vacuum energy, the energy doesn't come from emptiness. There is a vacuum that puts energy flowing or moving. If we think about the possibility that the electromagnetic vacuum can collect photons that vacuum or false vacuum can also collect and. bind electromagnetic waves to those photons. 

When researchers collect photons from the environment using the electromagnetic vacuums, that thing opens the road to a new energy form. The practical solution can come from the distant future. The idea is that there is an electromagnetic pillar in the hologram, that transmits energy out from that structure. That thing makes energy travel against the hologram. 

Or some outcoming energy stresses the hologram that can bind that energy in that hologram. This kind of system can someday use gravity waves or even dark energy as a power source. The idea is that the energy waves interact with those photon pillars and then the system can put that energy into electric circuits. 


https://www.rudebaguette.com/en/2025/06/quantum-laws-just-got-twisted-u-s-engineers-use-entangled-light-to-project-mind-bending-3d-holograms-in-real-time/


https://www.rudebaguette.com/en/2025/06/scientists-achieve-the-impossible-mind-blowing-breakthrough-as-experts-create-light-from-empty-space-by-manipulating-time-and-space/



Friday, May 30, 2025

False vacuum decay.



False vacuum decay is one of the most feared things in quantum mechanics. Another name for that thing is the dimensional collapse. The idea is that all particles involve false vacuums. The small false vacuum forms near superstrings that are the edge of the particle. The quantum low pressure in the particle keeps it in form. Or, the thing that keeps particles in their form is the interaction between the quantum field inside the particle and outside the particle. 

The outside quantum field pushes against the whisk-looking structure of the particle. A particle remains in its form as long as its inner structure is at a lower energy level than outside the particle. The thing that determines the particle's energy level is the elementary particle's shell. If the energy level in the particle rises too high, that rips its structure into pieces. If the energy level in a particle falls too low, that causes the particle's collapse. 

The dimension is energy level. The dimensional collapse can happen internally or externally. In internal collapse, the particle loses its internal energy. And that causes the particle to fall like a balloon that loses its internal pressure. In external collapse the outside energy level drops and that pulls energy out from the particle. 

When particles turn flat it leaves a hole behind it. Particles near that collapsed particle send an energy impulse that falls in the energy pothole, but that energy cannot reach the collapsed particle. And when energy, or wave movement comes from every direction that causes the formation of the energy bubble or dome. 


When outside energy tries to fill that hole that energy must come from somewhere. And that "somewhere" is other particles. That can cause a chain reaction where more and more particles start to lose their energy. The problem is that the wave movement slides over those flat parts but it cannot reach them. 

When lots of energy falls into the same spot from a large area. That can have a very strong impact. That packs lots of energy into one point, and sooner or later the energy load in that point turns so high that it pushes quantum waves backward. That can form a quantum tsunami that destroys lots of things. This explosion can be very strong. 

The other model is that dimension just removed from the people's eyes. The collapse of the energy level in particles causes a situation where the particle turns flat. And then other particles around it lose their energy to that particle. That means that the large particle group can lose its energy in a very short time. That means the particles around those particles turn flat. And that means those particles lose their ability to interact with other particles. Because energy travels always to lower energy points. A particle that falls can collect lots of energy from around it. 


https://www.vice.com/en/article/the-learnin-corner-false-vacuum-decay-0000052-v18n1/


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


Cosmological crisis, and why some stars seem older than they should.



"Scientists have made a new calculation of the speed at which the universe is expanding, using the data taken by the powerful new James Webb Space Telescope on multiple galaxies. Above, Webb’s image of one such galaxy, known as NGC 1365. Credit: Science: NASA, ESA, CSA, Janice Lee (NOIRLab), Image Processing: Alyssa Pagan (STScI)" (ScitechDaily, Hubble Trouble Solved? Webb Telescope Finally Cracks the Universe’s Growth Mystery)

The cosmological crisis should be over. Researchers compared the latest data with distant objects, including black holes and red giants, against the cosmological standard model. Those new observations are in line with the standard model, and that thing solved the crisis. The crisis formed when the universe seemed to expand faster than it should. The question is this: can the universe be a little bit asymmetrical? 

The asymmetry can form for many reasons. One of the reasons why those cosmological asymmetries can form is that the supermassive black hole(es) that could formed just after the big bang can roll material into it. That forms the hole in the material.  And when material travels past that black hole there forms a large pothole in the quantum field. So, if the black hole forms in the young universe just after the big bang it turns into the supermassive black hole. 

So, if part of the material falls back into the black hole, that hypothetical case means that the black hole at the center of the universe gets a companion black hole. The idea is that after the Big Bang which was a series of events. 

Where the material reached the form as we know it. If in a young super energy level universe forms a "Kugelblitz" black hole that black hole will turn supermassive. The denser energy state means that the black hole is very small in a high-temperature universe. But the black hole is an interaction. And when outcoming pressure turns lower that means the black hole can expand its event horizon. 

The idea is that the singularity sends a very high energy, short-wave radiation. That radiation forms a false vacuum around the singularity. The false vacuum forms when a fully symmetrical particle called singularity vaporizes. When that singularity vaporizes it acts similar way as an ice bite that melts in the room. 

There is an interesting theory that the black hole is a false vacuum or vacuum. In the last case, the cosmic void just collapses. If there is some kind of material cloud in the middle of that thing.  Then there forms a formation in the middle of the vacuum that acts like a thermal pump. Actually, the bubble that the energy field cannot press together can also act as a black hole. The idea is that the structure that moves energy or quantum field in two directions can act as a black hole. 

The false vacuums can interact similar way as black holes. The idea is that the false vacuums can surround all gravitational holes or gravitational centers. The question is: what happens if material and energy travel past the gravitational center at a very high speed? There is the possibility that the very fast-moving material and energy flow around the gravity center just pulls that object with it. That means the high-power energy forms a vacuum around the object. 

And that object can vaporize leaving the bubble behind it. If the extremely fast-spinning quantum field around that bubble can keep its form. That can mean that the black hole can be the bubble in the fast-spinning quantum field. 

There is the possibility that sometimes the false vacuum interacts with its environment like a black hole. There is the possibility that a false vacuum accelerates energy flow that jumps over the vacuum. That causes a situation. Where that energy acts like a thermal pump. That pulls energy out from a vacuum. 

That turns deeper and deeper. The idea is that there are also other types of things than just singularities that can form an effect that looks like black holes. And maybe all black holes are not similar. There might be many different types of black holes. 




"Artistic impression of a neutron star that is ‘evaporating’ slowly via Hawking-like radiation. Credit: Daniëlle Futselaar/artsource.nl" (ScitechDaily, Space Everything Evaporates: From Neutron Stars to You, the Universe Is on a Clock)


All material will evaporate. That means material turns into wave movement because the quantum field, or Higgs field turns weaker. And it cannot resist energy flow out from particles. Or it cannot press particles into their form. 


If a star goes into a cosmic bubble or cosmic void that can cause that energy to flow out from the star faster than it should. That can cause opposite time dilation where time moves faster than it should. 

Time dilation is a two-way effect. The time slows in the object when its energy level turns higher. But if the object gets into the cosmic void that causes energy to flow out from that object faster. The cosmic void that forms around the object can turn time travel faster than usual. Time dilation means that when energy flows from the object determines how fast the time moves or travels. 

Another name for the time is the speed of the particle vaporization. When a particle delivers energy it turns older, and when a particle receives energy it turns older. It's possible that very high-energy stars can blow the bubble around them. Or they can travel in the cosmic void, which can cause the opposite time dilation which means the star seems to be older than it should be. 

But the other thing that may look interesting is stars that seem to be older than the universe. There can be situations in which the blue supergiants or hydrogen stars can go near black holes. The black hole can pull material out from the hydrogen star. And then. Another thing is that the black hole can cause time dilation. 

The time dilation can explain why some stars seem to be older than they are. Another thing is that the black holes or their transition disks send energy flow that heats stars around them. When sometimes that energy flow turns weaker that can cause a situation. That causes situations where particles can deliver a little bit too much energy, and their energy level turns lower than it should be. 

In a high energy stars the hydrogen atoms or subatomic particles can also spin very fast. That spin can cause time dilation. In that case, the time should look slowing. But then the high-energy star can blow energy and material away from its environment. That means the energy flows out from the star. And that can form electromagnetic low pressure around the star. That means energy flows away from the star faster than it should. And then that thing makes time move faster than it should. This kind of cosmic void around the stars can explain, why some of them look older than the the universe. 


https://scitechdaily.com/everything-evaporates-from-neutron-stars-to-you-the-universe-is-on-a-clock/

https://scitechdaily.com/hubble-trouble-solved-webb-telescope-finally-cracks-the-universes-growth-mystery/

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


Wednesday, February 22, 2023

What happens when a black hole is forming?



When a supernova explosion happens. The shockwave starts to travel out from the star. A Supernova explosion is a case where fusion fills the entire star during that process. Energy impacts the middle of the supernova with enormous power. The shockwave forms an electromagnetic vacuum. So we could say that the supernova is like a giant vacuum bomb. 

And when the power of that shockwave decreases the electromagnetic vacuum around the nucleus of the star starts to fill. At least in this stage in the supernova explosion energy that drops in that electromagnetic vacuum smashes against the material that is in the middle of the star. The energy impact smashes electrons in the atom's nucleus. 

And if that impact is powerful enough it just smashes all elementary particles, quarks, and electrons into one entirety called a singularity. That material is extremely thick. And when some kind of electromagnetic radiation impacts that thing, that radiation reflects from the object. 

That reflection causes things where the gravitational waves are traveling out from the black hole's nucleus. If the reflection happens in very short periods. The vacuum between those power fields has no time to fill. That thing causes the case that simultaneously repeating vacuums are starting to pull objects inside that thing. And when objects reach the black hole's nucleus. They reflect from the nucleus. The thing that sends gravitational waves can be some kind of superstring. 

Black holes are like potholes in the universe. Whenever a black hole sends a gravitational wave against another energy wave that travels in it the impacting energy wave loses the energy of falling waves and material. So the energy level of radiation that impacts the black hole's nucleus is always lower. And that causes a situation that the black hole loses its mass. 

Those supermassive objects interact with their environment. Outcoming radiation keeps a black hole or its event horizon in form. If the radiation that falls in the black hole ends nothing limits the expansion of the black hole. But because the black hole will not get more energy, it will turn lighter. Gravitational waves are forming similar forms as other materials and magnetic fields. When the expansion of the gravitational field is unlimited. That turns its energy level lower. That causes the explosion of the black hole. 

Also if a black hole's mass is too high that causes a situation the impact of falling energy or wave movements is too strong. That thing destroys the black hole. Inside the black hole, its nucleus rotates at an extremely high speed. The speed of that point is about the speed of light. That thing causes high power interaction between internal structure and gas that is falling into the black hole. And there is a small vacuum in that absolute ball. 

That vacuum can be smaller than a quark. That vacuum pulls the nucleus inside. So the internal vacuum and outcoming energy are keeping singularity in the form. When the reflection starts from the nucleus of the black hole it's in a vacuum for a short moment. If there is no internal structure that pulls the singularity inside. There is the possibility that it destroys the singularity. 

Astronomers could have a model for why photons from GRB 221009A were at a high energy level.

"An illustration shows a photon from the biggest cosmic explosion since the Big Bang reaching Earth. (Image credit: Robert Lea (created...