Showing posts with label quantum. Show all posts
Showing posts with label quantum. Show all posts

Saturday, November 8, 2025

The hidden side of light can transform electronics.



“Illustrative scenario of HHG at Terahertz frequencies, induced by the pumping of a 2.5 W power THz QCL on a Topological insulator SRR. Credit: Alessandra Di Gaspare et al.” (ScitechDaily, Scientists Unlock a Hidden Side of Light That Could Transform Technology)

Optical data transmission is much safer. Than radiowave transmission. Ultra-secure laser data transmission has one little problem. Those laser rays don’t travel through the walls. It’s easy to jam the laser data transmitter simply by putting a wall between the transmitter and receiver. There is a possibility of using some other types of electromagnetic radiation to transmit data. One of those radiation types is terahertz radiation. 

What if you can break light into the terahertz (THz) area and then turn it back to light? This could make a new advance in electronics. It’s possible to make new and faster communication. By using light and THz radiation together. In the simplest binary systems, the THz radiation can mean zero, and the light can mean one. If those bits are numbered, the system can transmit data very fast. But the thing. That makes THz radiation a very interesting tool; it is a simple thing. THz radiation can travel through walls. That allows researchers to create a communication system that is. Hard to eavesdrop. If the system can transform the radiation wavelength. between Thz and light. This makes it easier to cover information. 




“A new global study uncovers surprising behavior in the universe’s most elusive particles, hinting at answers to why anything exists at all. Credit: Stock” (ScitechDaily, This Strange Particle May Hold Clues to the Universe’s Biggest Secrets)


The ability to transmit data through walls is one of the things. That limits the quantum network creation. One of those solutions can be a low-power X-ray laser. Those systems are dangerous to humans, but it's possible to aim for coherent X-ray radiation. Makes it possible to position those systems. To a level. Their radiation will not touch people. 

Another possibility to transmit data in qubits is neutrinos. A neutrino is a so-called ghost particle that can travel through walls and even through planets and stars.  Those particles can allow for the transmission of data as real qubits. In the perfect quantum networks, data that travels in the qubits is connected to particles. The system can work like this: the network stops the neutrino at the beginning of the nano-tube-based system. 

There, the system can transport data into that neutrino qubit. And then send it through the quantum network. In those systems, the lasers can aim the qubit in the right direction. The system uses laser LEDs like a pinball. Those systems push neutrinos into the right tracks. This system requires a lot of new technology. The ability to create neutrino qubits would be as fundamental a thing as the internet itself. The neutrinos’ features make them very hard to control.  But maybe. They can someday transport data over the quantum networks. 



https://scitechdaily.com/scientists-unlock-a-hidden-side-of-light-that-could-transform-technology/




https://scitechdaily.com/this-strange-particle-may-hold-clues-to-the-universes-biggest-secrets/




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


Tuesday, August 26, 2025

Wormholes: how to make them?

  Wormholes: how to make them?



The wormhole is the thing that can solve the quantum network’s biggest problem. How to move particles between two places and protect that information from outside effects. If we want to use things. Like laser beams to make the quantum channel, we face another problem. A regular laser beam leaves particles inside it. And the key element is to remove those particles from the quantum channel. So, the answer can be the series of quantum fields that melted into one entirety. Then the system pushes those particles out. From that quantum tube. 

In this text, the key is in acoustic and electromagnetic wormholes. Wormholes are channels between two points. The wormhole is a synonym for a quantum channel, the tunnel through the quantum fields. Otherwise, we can say that an acoustic wormhole is a channel. Through gas or liquid. When we want to make a wormhole through air or some liquid. We must realize that the wormhole can be like a tornado through the medium. An acoustic wormhole can be made by spinning two fullerene or benzene molecules in a medium. Those molecules are opposite each other. 

And then they can start to form the tornado through that condensed liquid. Then, some acoustic beam or particle will push that molecular tornado empty. Then the system must only keep the coustic tornado open using the higher energy acoustic waves that deny the channel collapse. 

An electromagnetic wormhole forms when the laser or some other energy beam pushes an atom’s or other particle’s quantum fields into one form. The idea is that the energy beam stretches the quantum fields around atoms or other particles. When those quantum fields touch each other. The system can push those atoms away from that quantum channel. The energy ray that the system aims. Through that channel. Begins to keep the quantum channel in its form. And deny its collapse. If that system can really be created. It can open new views into quantum communication. 

The system works like this. The first quantum system creates a series of superpositioned and entangled atoms. The EM wormhole forms those atoms or their nuclei that are quantum entangled. And then those particles can start to form a quantum tornado between them. The system creates an electromagnetic shadow using a beam that hits the particle pair from the back of the transmitting particle. To create a channel between those atoms. The system must only push those particles out from the channel to form the quantum tube; there is no electromagnetic resistance. 

The key question is: can the system to create a hovering, or empty quantum tube by using a laser, or a particle beam as the virtual atoms in the middle of that tube? It could be possible. To remove the atom nucleus from the quantum field and make the field sustain using a virtual particle. That kind of empty field can be a powerful tool 

Then it pushes those atoms away from that quantum channel, and then the radiation pressure of the laser or particle beams. That denies that tunnel collapse. The energy beam acts like a water flow. That causes counter-pressure that keeps the wormhole open. The electromagnetic and acoustic wormholes are tools that allow researchers to create a quantum network. The electromagnetic wormhole forms in the acoustic wormhole. This allows the system to transport qubits or particles that carry information through the air. If something touches information that carrier particles carry, it destroys the information. 

Friday, August 15, 2025

Happy 100-year birthday, quantum mechanics.

  Happy 100-year birthday, quantum mechanics. 


The GIF above this text introduces field interaction. When the outside field pushes the inner field, the inner field’s or structures' size will turn smaller. Until the pressure or energy level in it can break that process. Or the pressure or energy level turns so high that it can resist the outside field. 

It’s 100 years of quantum mechanics. In 1925, young scientists named Werner Heisenberg went to Helgoland Island and developed the concept of quantum mechanics. In Helgoland, he realized that all things in the universe are in interaction. There, that person realized that the sky is blue because some kind of particles hit it.

And then that thing caused shockwaves that we see as blue light. The blue light is so-called Cherenkov radiation. That radiation forms when a particle that travels speed of light hits the atmosphere. Those particles must slow their speed because the speed of light is lower in the atmosphere than outside the atmosphere. 

When a particle slows its speed, it must transfer its kinetic energy into its environment. When a particle hits the atmosphere. It sends a shockwave. The shockwave that we see as a photon is the thing that slows the particle's speed. When we think that the universe and all other systems are growing entropy, that means. We see that chaos is increasing in the system. But then we must wake up and make one decision. 

If the system is limited, any phenomena in it cannot be unlimited. And then we can see that entropy is not literally “chaos”. It's the thing that might look like chaos. But there can be repeating structures. Like in fractals. If researchers can someday find the order in the system’s entropy, they can calculate changes in its shape backward. And if those calculations are made right, they can uncover the shape of the original system. 

That makes this type of thing interesting. When a particle travels through the universe, it collects information from its environment. That information is on the particle like plague. And the problem is that. We cannot touch the particle. But if we could see the shape of the information that forms hills and potholes on the particle’s shell. If researchers know the route and entire systems. If the particle passes, it makes it possible to reorder that information. The problem is that near all stars, molecular nebulae, X- and gamma-ray bursts, and all other things involve quantum systems. 

The quantum fields in those systems are unique. And that makes this model theoretical. But if researchers know everything about the  particle’s route. They could restore information and see what things look like in that particle’s route. If that kind of thing is possible. That makes the quantum network possible. Data travels in a quantum network connected to particles. And if researchers can protect the data and calculate it back in the form. Where information was at the beginning of the particle’s journey. It allows sending bottle-post where information is stored in electrons. 

The ability to remove entropy. Makes it possible to see distant objects. And it can also allow researchers to transport information from the past to the future. Or from the future to the past. The black hole is the thing that can transport information from the future to the past. But the problem is that the entropy at the edge of the event horizon turns information into a mess that nobody understands. 

That entropy is like a series of whirls that mix information into a form. That makes no sense. But if researchers know how that border behaves and what kind of whirls there are. That allows them to re-order that information. That requires complete knowledge of the systems. And how those things behave in interaction. 


The model of Hawking radiation. And black hole evaporation.

  A quasar emits exceptional amounts of energy generated by matter falling into a supermassive black hole. Credit: NASA, ESA, and J. Olmsted...