Showing posts with label superconducting systems. Show all posts
Showing posts with label superconducting systems. Show all posts

Thursday, January 1, 2026

Meissner effect: the electromagnetic levitation.



“A long-standing mystery surrounding an unusual superconductor has taken a decisive turn. By carefully applying shear strain to ultrathin crystals of strontium ruthenate, researchers found that its superconducting transition temperature remains almost completely unchanged. Credit: Stock” (ScitechDaily, A 30-Year Superconductivity Mystery Just Took a Sharp Turn)

The Meissner effect is the key. Into. Ultimate stealth. And low noise flying. In the second image, you can see how the energy field or quantum field travels past the object, causing the lifting effect. The Meissner effect causes ideas. If researchers can create the material that avoids the situation where electron shells fall closer to the atom's core, it would make it possible. To create room-temperature superconductors. 

In superconductors, the material is in the Bose-Einstein state. That means their energy level is very low. The distance of electrons to the atom’s core is very long. When. Outside energy pushes atoms. It pushes. An atom’s electrons. To the atom’s core. When the outside quantum field transports energy into an atom. That effect. Pushes electrons. Close to each other. And the atom’s core. That raises energy density in the atom. That pushes atoms away from each other. And that destroys the superconducting.  


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“Diagram of the Meissner effect. Magnetic field lines, represented as arrows, are excluded from a superconductor when it is below its critical temperature.” (Wikipedia, Meissner effect)


T= Real temperature


TC=Temperature critical. Critical temperature is the point. At which the object can form the surrounding quantum field. Which closes its particles inside one quantum field. The idea of the Meissner effect is that every particle is inside the quantum field. The particle that can be an elementary particle or atom is in the middle of its quantum field. When. 

The quantum field moves. The position of the particle in relation to the field changes. Because particles attempt to position themselves in the middle of their quantum fields. Moving that field. Moves particles. Theoretically, it is possible to create a quantum system that moves the craft in a way that seems to break natural laws. The system can hover using the Meissner effect. 

This requires that the entire craft’s shell turn into a superconductor. Then the system must only adjust the position of the quantum bubble that surrounds the superconducting craft. This means that the object attempts to position itself in the middle of the bubble. This thing moves the craft. 

The idea is a “stolen” or adjusted version of the idea that there is a dark matter halo that moves a galaxy. The dark energy will not affect matter. But if the source of dark energy is in dark matter. The dark matter. That sends dark energy, that is the wave movement. 

Dark energy. With. The source is in. Dark matter particles can affect. To Other. Dark matter particles. Dark energy moves. The dark matter halo around the galaxy. And because the galaxy attempts to position itself. Into the middle of the dark matter halo, moving that halo moves the galaxy. 

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The Meissner effect in the superconductor is possible because particles in the superconducting material are in an extremely low-energy condition. There is no oscillation between particles. This means energy from outside travels to the superconductors. 

And then that energy pushes particles closer together. Those particles are inside one. A very large. Quantum field. When energy starts to travel from below to that object, those particles act. As. One entirety. This thing forms. An. An electromagnetic low-pressure or lower-energy area above the superconductor. The energy that comes from below pushes a superconducting object above the ground. The reason why the same effect cannot push other objects up is simple. 

The quantum field that pushes objects upward cannot travel between particles at higher temperatures. In the case of superconducting objects, the quantum field around objects doesn’t allow the pushing field travel in the objects. Those are in the superconducting condition. Because. There is no oscillation in the object, and that doesn’t allow the outside radiation to travel between particles. For making levitation, the lifting field must have a pushing effect. 

Into. A so large area that it can affect as many particles, that the electromagnetic shadow pushes the entirety up. The energy must not also travel in the object. When. We think of the possibility. Of using the Meissner effect. As levitation. It's possible to cover the surface with. Large number. Of superconducting particles. Those superconducting points can lift even large objects from the ground. Or they can decrease the weight of the object. 



https://scitechdaily.com/a-30-year-superconductivity-mystery-just-took-a-sharp-turn/



https://scitechdaily.com/physicists-crack-a-new-code-to-explore-dark-matters-hidden-life/



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


Wednesday, April 27, 2022

The new one-way superconductor will make possible the new types of microchips. And it can allow the making of solid-silicon-based quantum computers.




One-way superconductors are making it possible to create superconducting diodes. Those systems are driven electricity in one direction. And that thing makes it possible to create solid quantum computers. The simplest model of the solid quantum computer chip is the system where data travels in the superconducting wires. That system looks a little bit like a guitar. Each wire and the changes in the voltage are the certain layers or states of the qubit. 

That thing makes those systems more compact. Also, that thing makes them less sensitive to electromagnetic stress. The superconducting systems are interesting because when electricity travels in the superconducting circuit it keeps its form. And that thing makes it possible to drive data to the quantum state of memory for resending through quantum computers. 

There is also the second possibility to make a compact quantum computer. That thing is based on miniature technology. That possibility is less radical than the solid superconducting system. The superconducting diodes are making it easier to transform binary data to the qubit.  And the reason for that is simple. The electricity that travels in the superconducting wires keeps its form. 

Loading data to qubit might seem very difficult. The qubit will stress by a certain level of electromagnetic radiation. And the data that flows from the wire is stored to a certain energy level in the qubit. So the energy level of the qubit turns to a certain level. Then the small data bite will drive to that qubit. Then the laser will send that data forward. Data flow will be cut into pieces before this operation. And the remarkable thing is that the system adjusts the energy level of the receiving part. 

The binary data will transform to the quantum mode by using the quantum memory as the medium. Binary data flow will be driven to quantum memory and transformed to qubit mode. When data turned back to binary mode. Each layer of the qubit will load to wire one after one. And that allows the binary computer to handle that data. 

The futuristic quantum microchip can have two superconducting silicone layers. And between them is the photon crystals where are photons. That is superpositioned and entangled. Those photons are superpositioned and entangled through the nanotubes that also protect them against electromagnetic turbulence. 

The distance between those photon crystals could be less than a micrometer. And the system is based on the idea that the data flow will be cut into pieces before it will be driven to the solid layer. There those data bites will drive to the quantum memory. And then resend through those photons. 


https://scitechdaily.com/breakthrough-discovery-of-the-one-way-superconductor-thought-to-be-impossible/


Image:) https://scitechdaily.com/breakthrough-discovery-of-the-one-way-superconductor-thought-to-be-impossible/


https://artificialintelligenceandindividuals.blogspot.com/

Monday, January 31, 2022

Superconductors and magnetic levitation





Superconducting magnets are impressive tools. They can make MagLev (Magnetic levitation) trains possible. The resistance is the major problem with high-voltage, large-scale systems. Resistance heats the magnetic systems, and it means also loss of power. 

The thing that makes the resistance problematic is turning electricity to heat. And that means that part of the electricity will go to the air. That thing causes there is needed more electricity than low resistance systems. 

If there is possible to make a large-scale superconducting system. That thing makes it possible to create. The magnetic-levitation in high-scale systems. The ultra-fast trains are only one example of how to benefit from magnetic levitation. 



Diagram 1) The magnetic leviatation system.


1) Superconducting magnet

2) Magnetic pushing effect

3) Levitating piece that can also be superconducting iron dust

4) The roof of the chamber 


The system pushes the levitating object against the roof of the chamber. And that thing makes aircraft lighter. Decreases the weight that is pointed to the ground. The system is like a magnetic version of the hot air balloon. And the system requires only the extremely cold gas that turns magnets into superconducting. 

That supercold gas is stored in the thermos bottle. Or there is the thermal pump in the aircraft. That thermal pump is only the layer that conducts the heat away from the superconducting system. And that is increasing the use of superconducting gas. 

The ultracold gas can also use to decrease the temperature of the core of aircraft. And that thing allows them to fly faster. But cold outer layer makes it possible to improve the stealth capacity of aircraft.  The low-temperature outer core decreases the infrared signature and makes aircraft harder to observe. 


The superconducting-based magnetic levitation can use in heavier-than-air aircraft. That kind of system can make the next-generation silent stealth systems possible. 


The idea is very simple. There is a superconducting magnet in the chamber. And then that magnet will push the other bite upwards. That kind of virtual levitation system can decrease the weight of the aircraft. So the system bases the phenomenon that is introduced above this text.

By benefiting superconductivity. Is possible to make electric-engine powered aircraft that can fly virtually unlimitedly. The idea is that the antennas that are in the wings and body of the aircraft will target the radio and microwave radiation the antenna can collect electricity for the electric engine. Even the superconducting electric engines are not making the aircraft perpetual motion machine. The system will lose energy for the propeller and motion of the aircraft. 

The superconducting antenna can collect replacement energy from natural magnetic fields. And that thing will decrease the need to get energy from the transmission. The superconducting antenna is like the solar panel but it collects energy from the different wavelengths. And if the solar panel would work with superconducting systems. That thing can decrease the need for an outcoming energy supply. 


https://scitechdaily.com/solving-a-superconducting-mystery-with-supercomputer-computations/


Image 1) https://scitechdaily.com/solving-a-superconducting-mystery-with-supercomputer-computations/


Gravastars and the matrioshka universe.

“An expanding mini-universe could counterbalance the collapsing matter of a star, thereby creating a stable gravastar. Credit: Daniel Jampol...