Skip to main content

Time reversal symmetries and space reflection are used to control quantum materials.

    

Time reversal symmetries and space reflection are used to control quantum materials.



Above this text is an image that introduces time symmetry. This kind of thing can also use to create the quantum-size black hole. When the energy is pumped to quantum entanglement. There is the possibility that the energy level between those particles rises to the level that forming the quantum-size black hole is possible. 

That thing can use to create the quantum channel or electromagnetic- or even gravitational wormhole (so-called "real" wormhole) between those objects. And those things can use to create a powerful and very effective communication channel for quantum computers and in long-range quantum communication. 

Quantum technology is coming. The difference between the quantum and nanomaterials is the size. Quantum materials are forming far smaller particles than nanomaterials. The idea is that by using wave movement the single atoms or quarks can move from one place to another one. So quantum technology affects subatomic particles or single atoms. 

Nanotechnology is forming of single molecules or atoms. And by using quantum technology that thing can make the parts of nanotechnology more accurate. If we are thinking possibility to make nanostructures. By using acetylene molecules and long carbon molecules. The acetylene molecules can position between carbon molecules, and that thing turns the molecule turn like a ladder. That kind of ladder-looking hydrocarbon molecule can store information. And it can use in the ROM (Read Only Memory)circuits as storing very complicated kernel programs. 

That thing can act as the frame for quantum machines. The thing is that quantum microchips and other things require extremely small systems. The ability to make the quantum entanglements means that single atoms or ions can locate precisely in the right position. 

But that kind of system requires extremely high accuracy. And one of the systems that require high accuracy positioning is quantum computers. In that system the electrons or photons that are put to superposition transmit data. The electron can position to WARP-bubble by loading it with a high power energy load. And that thing makes it travel faster than other ways. Another thing that makes quantum-size WARP-bubble an interesting, tool is that it allows full control of those qubits. 

Quantum entanglement has an effect over time. This thing makes that effect extremely interesting. There is a possibility to affect quantum entanglement by stressing it with high-accurate energy loads. In that case, the energy load will target the ends of quantum entanglement.

Or energy load will position to the energy channel between that superposition and entangled particle pair. The thing is that superpositioned and entangled particles can bring information to the observer faster than if the information is coming through the air. 

This kind of system is making it possible to move single photons or electrons on the layers. In the quantum world, the layer can be physical or it can be the electromagnetic field where the particles are hovering above the EM-field. 



https://scitechdaily.com/physicists-exploit-space-reflection-and-time-reversal-symmetries-to-control-quantum-materials/


Image:https://scitechdaily.com/physicists-exploit-space-reflection-and-time-reversal-symmetries-to-control-quantum-materials/


https://thoughtsaboutsuperpositions.blogspot.com/


Comments

Popular posts from this blog

Chinese innovations and space lasers are interesting combinations.

Above: "Tiangong is China's operational space station located in low Earth orbit. (Image credit: Alejomiranda via Getty Images)" (Scpace.com, China's space station, Tiangong: A complete guide) Chinese are close to making nuclear-powered spacecraft.  Almost every day, we can read about Chinese technical advances. So are, the Chinese more innovative than Western people? Or is there some kind of difference in culture and morale between Western and Chinese societies? The Chinese superiority in hypersonic technology is one of the things that tells something about the Chinese way of making things.  In China, the mission means. And the only thing that means is mission. That means that things like budgets and safety orders are far different from Western standards. If some project serves the Chinese communist party and PLA (People's Liberation Army) that guarantees unlimited resources for those projects. Chinese authorities must not care about the public opinion.  If we th

Iron Dome is one of the most effective air defense systems.

The Iron Dome is a missile defense system whose missiles operate with highly sophisticated and effective artificial intelligence. The power of this missile defense base is in selective fire. The system calculates the incoming missile's trajectory. And it shoots only missiles that will hit the inhabited area. The system saves missiles and focuses defense on areas that mean something. The system shares the incoming missiles in, maybe two groups. Another is harmless and another is harmful.  Things like killer drones are also problematic because their trajectories are harder to calculate than ballistic missiles. The thing that makes drones dangerous is that they can make masks for ballistic missiles. And even if those drones are slow, all of them must be shot down.  The thing is that the cooperation between drone swarms and ballistic missiles is the next danger in conflict areas. In the film, you can see how drones make light images of the skies. The killer drones can also carry LED li

The innovative shield that protects OSIRIS-APEX can also protect the new hypersonic aircraft.

"NASA’s OSIRIS-APEX spacecraft successfully completed its closest solar pass, protected by innovative engineering solutions and showing improvements in onboard instruments. Credit: NASA’s Goddard Space Flight Center/CI Lab" (ScitechDaily, Innovative Engineering Shields NASA’s OSIRIS-APEX During Close Encounter With the Sun) The OSIRIS-APEX probe travels close to the sun. The mission plan is to research the sun. And especially find things that can warn about solar storms. Solar storms are things that can danger satellites at the Earth orbiter. And the purpose of OSIRIS-APEX is to find the method of how to predict those solar storms. Another thing is that the OSIRIS-APEX tests the systems and materials that protect this probe against heat and plasma impacts.  The same technology. The researchers created for OSIRIS-APEX can used in the materials and structures. That protects satellites against nuclear explosions. That means this kind of system delivers information on how to prot