Skip to main content

Quantum teleportation might make possible to make the awesome quantum computers


 

 

Diagram of quantum teleportation 


Quantum teleportation might make possible to make the awesome quantum computers 


Quantum teleportation makes it possible to transport data in quantum computers(1). The idea of the quantum teleportation(2) is that the information would send between photons on computer chips, and even between photons, which is not physically connected. So that means that there is a possibility to make the ring of photons. The source article for this text is below this writing.


And then make the information travel in that ring. So that kind of thing would make it possible to make the subatomic qubits, which can transport data effectively at least in the computer chip. But also the researchers of the University of Rochester and Purdue University, telling that teleportation between electrons is also possible. That would happen by benefitting the electric fields of the electrons, which can benefit to transport data. The system would oscillate two electrons with the same frequency, and that thing would make many things possible, which we even don't realize. 


Electrons are promising things to act as qubits. The thing is that this kind of quantum size qubit is extremely hard to handle. "The individual electrons would be acting as a qubit because they easily interact with other electrons," says the researcher John Nichol, the assistant professor of physics at Rochester(1). So the form of the qubit can be changed quite easily, which means the data would send through the computer and store again in the form of photons. And why somebody wants to make that kind of thing? 


There is a possibility or futuristic vision that most of the quantum computers of tomorrow are satellites, that are operating at the Kuiper belt. That thing would help to keep those extremely powerful systems in the temperature, which is near the zero degrees Kelvin. And zero-gravity conditions would make it easier to handle the qubits are they electrons, atomic or molecular. 


When we are talking about quantum teleportation in the ring of photons or electrons, we could benefit that thing in the data storage, which are the most effective tools in long-distance space travel. The transferring data would happen by using the electron base hard-disk, and then that data would transfer to photons. After that by using the laser ray, that information would send to Earth from the Kuiper belt. 


And the thing what makes that kind of information transmission more effective than ever before is that the system could store information in as the qubits, which means that the system could be extremely fast, and it makes possible to connect quantum computers in the same network by using the laser rays, or if we use extremely good imagination, that kind of systems might use stopped laser rays, where two communication lasers would shoot the same frequent laser rays against each other. That will make it possible to make the network of quantum computers, which transports data in the form of qubits.



(1) https://scitechdaily.com/teleportation-is-indeed-possible-at-least-in-the-quantum-world/


(2) https://en.wikipedia.org/wiki/Quantum_teleportation


Image: https://marxtechdigitalsolutions.com/blog/2019/04/09/quantum-teleportation/

Comments

Popular posts from this blog

Plasmonic waves can make new waves in quantum technology.

"LSU researchers have made a significant discovery related to the fundamental properties and behavior of plasmonic waves, which can lead ot the development of more sensitive and robust quantum technologies. Credit: LSU" (ScitechDaily, Plasmonics Breakthrough Unleashes New Era of Quantum Technologies) Plasmonic waves in the quantum gas are the next-generation tools. The plasmonic wave is quite similar to radio waves. Or, rather say it, a combination of acoustic waves and electromagnetic waves. Quantum gas is an atom group. In those atom groups, temperature and pressure are extremely low.  The distance of atoms is long. And when an electromagnetic system can pump energy to those atoms. But the thing in quantum gas is that the atoms also make physical movements like soundwaves. It's possible. To create quantum gas using monoatomic ions like ionized noble gas. In those systems, positive (or negative) atoms push each other away.  When the box is filled with quantum gas and som

The breakthrough in solid-state qubits.

Hybrid integration of a designer nanodiamond with photonic circuits via ring resonators. Credit Steven Burrows/Sun Group (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) ****************************************** The next part is from ScitechDaily.com "JILA breakthrough in integrating artificial atoms with photonic circuits advances quantum computing efficiency and scalability". (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) "In quantum information science, many particles can act as “bits,” from individual atoms to photons. At JILA, researchers utilize these bits as “qubits,” storing and processing quantum 1s or 0s through a unique system". (ScitechDaily, Solid-State Qubits: Artificial Atoms Unlock Quantum Computing Breakthrough) "While many JILA Fellows focus on qubits found in nature, such as atoms and ions, JILA Associate Fellow and University of Colorado Boulder Assistant

Metamaterials can change their properties in an electric- or electro-optical field.

"Researchers have created a novel metamaterial that can dynamically tune its shape and properties in real-time, offering unprecedented adaptability for applications in robotics and smart materials. This development bridges the gap between current materials and the adaptability seen in nature, paving the way for the future of adaptive technologies. Credit: UNIST" (ScitechDaily, Metamaterial Magic: Scientists Develop New Material That Can Dynamically Tune Its Shape and Mechanical Properties in Real-Time) Metamaterials can change their properties in an electric- or electro-optical field.  An electro-optical activator can also be an IR state, which means. The metamorphosis in the material can thermally activate.  AI is the ultimate tool for metamaterial research. Metamaterials are nanotechnical- or quantum technical tools that can change their properties, like reflection or state from solid to liquid when the electric or optical effect hits that material. The metamaterial can cru