Showing posts with label entanglement. Show all posts
Showing posts with label entanglement. Show all posts

Friday, May 2, 2025

Quantum entanglement, and non-symmetrical quantum teleportation.




"A groundbreaking experiment captures the speed of quantum entanglement, paving the way for advancements in secure communication and quantum technology." (Sustainability-times.com/"Faster Than Anything Ever Seen”: Mind-Blowing Speed of Quantum Entanglement Measured for the First Time in Scientific History)

The new breakthroughs in quantum entanglement research can revolutionize this kind of technology. The ability to introduce quantum entanglement mathematically opens the roads to more trustable quantum computing. Quantum entanglement is the thing that carries information with incredible speed. Quantum entanglement is a prime element in quantum teleportation. 

In quantum teleportation, information can travel with incredible speed. The reason for that is this. When things like laser beams make the superposition and entanglement between particles they form the quantum shadow or quantum channel between those particles. That quantum channel is the "lightweight, or electromagnetic wormhole, channel through the quantum fields. 



Quantum Computing Coupler Art Concept

"MIT scientists created a powerful new coupler that speeds up how quantum computers measure and process information. It could lead to real-world quantum machines that operate with far fewer errors. Credit: SciTechDaily.com" (ScitchDaily, Supercharged Qubits: How MIT’s Quarton Coupler Accelerates Quantum Computing)

Then the transmitting particle is at a higher energy level than the receiving particle sends a string through that channel. Information that travels between those particles travels in those strings. If we would see that information it's like wave movement in that string. 

The electromagnetic shadow is the reason why light can travel faster between those particles than outside that shadow. So the question is can we someday make teleportation for some devices or maybe even humans? 

Quantum Circuit With Strong Nonlinear Light Matter Coupling
"Researchers demonstrated extremely strong nonlinear light-matter coupling in a quantum circuit. Stronger coupling enables faster readout and operations using qubits, which are the fundamental units of information in quantum computing. Credit: Christine Daniloff, MIT" (ScitechDaily,  Supercharged Qubits: How MIT’s Quarton Coupler Accelerates Quantum Computing)


Things like quantum teleportation between protons and other complex, asymmetrical systems tell us that theoretically, teleportation is possible. If we want to teleport things like cars we should only make a string that is larger than the thing, that the system wants to teleport. So the car must fit into that string that should carry it from point A to point B. That is the great problem with teleportation. Making strings that are large enough, that thing requires powerful systems and dense materials can make the uniform string. 

There is the possibility that this kind of material exists only in black holes. In some visions, the spinning extremely dense materials can make the string that can transport complex systems and structures between two superpositioned and entangled particle entiretities. But the problem is this: the quantum entanglement forms between quarks or atoms. 


Quantum Entanglement Pair Art Concept

"Researchers have cracked a key mathematical challenge in quantum entanglement distillation, offering new hope for purer quantum states vital for quantum computing and communication. Credit: SciTechDaily.com" (ScitechDaily, Quantum Code Cracked: Scientists Solve 20-Year Puzzle Behind Entanglement Purity)


In that case, the system should make that superposition and entanglement between two entireties. There is the possibility that the system can make the energy bubble, like a soap bubble over the entirety. Then the system shoots laser rays over that structure. The energy beam stretches that energy bubble. And forms the channel between points A and B. Then the vacuum pulls that object through that channel. 

The second problem is where that energy balloon or bubble comes from. If that thing forms inside the structure it will crush it immediately. If we can make a ball-shaped energy field around the capsule that is powerful enough that thing could make complex-system teleportation possible. But those things can happen in the distant future. Today teleportation is only a theoretical thing. 


https://scitechdaily.com/quantum-code-cracked-scientists-solve-20-year-puzzle-behind-entanglement-purity/


https://scitechdaily.com/supercharged-qubits-how-mits-quarton-coupler-accelerates-quantum-computing/

https://www.sustainability-times.com/in-depth/faster-than-anything-ever-seen-mind-blowing-speed-of-quantum-entanglement-measured-for-the-first-time-in-scientific-history/

Sunday, December 29, 2024

Superposition and time.


The quantum teleportation between two particles. Under the common quantum field. That quantum field forms the channel between those particles. And that channel minimizes disturbance between those particles. 

Quantum entanglement and superposition are key elements for quantum teleportation. The Pauli exclusion principle says that there cannot be two identical fermions in the same quantum system. If there are two identical particles even in the same universe, that means sooner or later those particles make quantum superposition and entanglement. 

But anyway, those particles can be almost identical. The quantum superposition and entanglement require that another particle has a lower energy level. But there is the possibility. Those particles that oscillate in the same frequency make the quantum bridge between them. 

Then there is the information that travels from the higher energy participant of the quantum entanglement to the lower energy participant. When those particle's energy levels reach the same level. Those particles will jump away from each other. Theoretically, there is no limit for the range of the quantum entanglement. 

But before the quantum teleportation can begin those two particles must be inside the common quantum field. The quantum field is like a bubble around those particles. And if those particles are in the separated quantum fields that border destroys the quantum entanglement. 

When the system makes the quantum entanglement by making the quantum shadow, or lower energy area between those transmitting, and receiving particles it stretches the quantum field around the transmitting particle. That quantum field is like a soap bubble that should close the receiving particle inside it. In a long-range quantum teleportation, the system should put a row of the particles inside the same quantum field that unites them. That minimizes the artifact effect. 

"Entanglement and superposition may seem bizarre, but they ultimately give rise to stable realities like ours".(Interesting Engineering, Classical world naturally emerges from parallel quantum universes: Study) 


"A pencil-shaped ultracold gas of frozen two-level atoms interacting via photon-mediated interactions, with elastic and inelastic components. A continuous laser drive excites the atoms on-resonance. Atoms also spontaneously emit photons into free-space. Credit: Steven Burrows/Rey Group and JILA" (ScitechDaily, Breaking Quantum Boundaries: Atoms Defy Synchronization in Free Space)



"Researchers used simulations to support quantum findings. (Representational image) "Entanglement and superposition may seem bizarre, but they ultimately give rise to stable realities like ours".(Interesting Engineering, Classical world naturally emerges from parallel quantum universes: Study) 



Above: Cosmic microwave background. 

When particles are under one quantum field. That makes the condition where the photon can travel faster than the photon travels outside that quantum field or tunnel. 

Researchers can create quantum entanglement and superposition between simple systems like two photons. Theoretically is possible to transport more complex systems like atoms. But the problem is that. When an electromagnetic tunnel forms between two atoms. It pulls atoms in there. 

The thing that denies the atom broke is energy that comes from the back. That energy pushes the atom into the electromagnetic tunnel. So we can theoretically transport even complex atoms through that energy tunnel called a wormhole. The wormhole presses energy against those particles and denies their destruction. For making successful quantum teleportation there must not be any type of disturbance in that wormhole. 

But there is the possibility that in the strange quantum world, information can form spontaneously another, mirror information. In that information whirl time travels backward. But if that mirror information is somewhere, what would be the name of that structure? 


That somewhere might be the opposite universe. The opposite- or mirror universe means the spacetime where the time travels backward. The idea is that when the particle makes the quantum superposition entanglement can form between the two ultimately complex quantum systems by one particle after another. So, in this model, the other universe forms particle by particle. 

Some researchers think that the mirror universe where time travels backwards would be the reason for time. When time travels forward in transmitting participant superpositioned and entangled universes that means the time goes backward in the receiving participant of those universes. 

The thing is this: if that antiuniverse exists the universe where we live is the transmitting participant. And the other universe is the receiving participant.  The reason why we cannot see another universe is that information can travel in one direction in the quantum entanglement. 

When we think about the simple systems that are easy to put in superposition and make entanglement between them. We can say that simple systems like energy fields can be a very large thing. It's possible to make quantum teleportation between two points by surrounding an object with an energy bubble. 

Then there is another energy bubble that oscillates with the same frequency but whose energy level is lower. There should be a bridge between those bubbles. And then the lower energy bubble pulls the object through that energy bridge. That principle can make the quantum teleportation possible also for complex structures. 


https://interestingengineering.com/science/classical-world-from-parallel-quantum-universes


https://www.sciencealert.com/quantum-teleportation-achieved-over-internet-for-first-time

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