





"Researchers achieved 94% fidelity in quantum teleportation by enhancing nonlinear optics with a nanophotonic platform, solving major noise and efficiency issues. Credit: SciTechDaily.com" (ScitechDaily, From Sci-Fi to Reality: Single-Photon Teleportation Breakthrough)
If the image above introduces the two proton superposition that superposition is interesting. In the simplest model, the system can simply put the quantum field that surrounds those quarks into the superposition and entanglement. The three main particles that form a proton are the two up, and one down quarks. So the superposition starts between those down quarks and then it spreads into the the up quarks.
The down quark's energy level is naturally higher than the up quarks. That means those things can make the internal superposition in the proton. Because, energy travels out from the down quark to lower energy up quarks that are in the "Y"-shaped positions that deny the standing waveform in the proton.
That means the nose-particle turns into superposition and then it transfers its oscillation into two other quarks. The problem is how to deny the standing wave formation in the proton. If that happens that blows those quarks away. There is also the possibility of putting two protons precisely in opposite positions to each other. Then the system can put those quarks into superposition and entanglement at the same time.
When the quantum computer loads data to the proton it simply makes waves into that particle's quantum field. Then laser transfers those waves into another proton. The idea is the same as in photon superposition and entanglement. When we talk about the superposition or Einstein's spooky action in the distance we don't mean that the particle itself is in two places at the same time. The superposition means that the system puts two particles oscillating in the frequency.
That thing makes quantum networks possible. If somebody tries to steal information from the quantum entanglement that person must just cut the quantum string. Or if information travels in the particles that mimic neurotransmitters the intruder must touch the particle. And then it destroys information.
So the system multiplies the dominating or transmitter particle's oscillation into another lower energy particle. The system shoots the laser ray over the transmitter particle. Then the transmitter particle sends a so-called quantum string to the receiving particle. That thing multiplies those oscillations to the receiving particle.
Or it transmits the waves that are on its shell to the receiving particle's shell, or quantum field. The quantum teleportation happens through the quantum channel. When a laser ray makes a quantum shadow on the other side of the particle that shadow pulls information into it. The requirement for quantum entanglement existence is that the energy level in the transmitting particle is higher than the receiving particle. The thing that puts limits on quantum teleportation is the quantum channel.
The quantum channel must be tight enough that side-coming energy fields, so-called Hall effects, or Hall fields are removed. The Einstein-Rose Bridge called Wormhole can transport at least probes over extremely long distances. The wormhole is the whirl in the gravity field. The theoretical, but almost confirmed wormhole is one of the ultimate versions of the quantum channels.
In those channels is the quantum low-pressure. That means there are fewer scattering fields and that means the light can travel faster in those channels. The thing that makes teleportation interesting is that the system can transfer information through the walls. The information travels in the electromagnetic, acoustic, or gravitational wormholes faster than outside that channel.
When we think about confirmation of the existence of those wormholes we should look for extremely high energy particles. The idea is that the energy that pushes a particle forward is the thing that locks time in that particle. The wormhole is an extremely tight version of the electromagnetic wormhole. The particle or object travels in that channel with incredible speed, because it rides with an energy wave. That energy wave cannot travel past the object. Ahead of the object is the electromagnetic vacuum.
The idea is similar when the object travels in the water tube. The water pushes that object forward. The thing that can prove the existence of those wormholes is the ultra-high energy ghost particles like neutrinos. If neutrinos travel in the wormhole, they cannot release their energy anywhere.
That means the wormhole acts like a laser. The requirement is that the gravitational whirl's shell is at a higher energy level than the particle that travels in the wormhole. If a particle that travels in the wormhole has a higher energy level than the wormhole's shell that radiation destroys the wormhole.
The idea of the wormhole is the same as the Tipler cylinder. The fast-rotating energy field pumps energy to the particles and probably objects that travel in the wormhole. The question is can the wormhole transport more complicated structures than neutrons and protons or information stored on their shell? If that is true teleportation can be closer than ever before. The teleportation machine can use atoms that it puts into the superposition and entanglement. Then those atoms or information will be conducted into the 3D printer that can print those objects over a long distance.
Teleportation and visions.
In some visions, the futuristic weapons use quantum teleportation to shoot the antimatter particles in the bunkers.
And in the other visions, the quantum channels or superpositioned particles make it possible to make the engine that creates the faster-than-light exhaust gas. The idea is that the system puts two particles, particle, and antiparticle into superposition and entanglement. The quantum shadow or electromagnetic wormhole allows that information can travel faster than light travels outside that shadow.
Then those antiparticles will travel through that quantum shadow. When the antiparticle impacts the particle in the absolute void. It sends a shockwave that travels faster than light in a short moment. The system can also make those impacts in the void that is less dense than the environment. That can make it possible to create exhaust gas that is faster than the speed of light.
https://scitechdaily.com/from-sci-fi-to-reality-single-photon-teleportation-breakthrough/
https://en.wikipedia.org/wiki/Proton
https://en.wikipedia.org/wiki/Quark
Quantum computers are complicated systems. The quantum computer uses qubits for the data-handling process. Qubits are superpositioned and entangled particles to transport information inside them. Normally those systems use superpositioned and entangled photon pairs. The system traps photons in the frame.
And then it starts to make the superposition and entanglements. That kind of quantum entanglement is quite hard to control because photons are so weak, that gravitational waves can affect them.
That makes those qubits a little bit unstable. In a quantum computer, the system drives information into the particle, and then superposition and entanglement start to transport information between two superpositioned and entangled particle pairs.
"Scientists have discovered over a dozen exotic quantum states using twisted molybdenum ditelluride, potentially paving the way for magnet-free topological quantum computers. Credit: SciTechDaily.com" (ScitechDaily, The Quantum Zoo Just Got Wilder: Magnet-Free States Discovered in Twisted Crystals)
"An illustration depicts an unexpectedly strong attraction between electrons in neighboring lattice sites within a 1D chain of copper oxide, or cuprate – a material that conducts electrical current with no loss at relatively high temperatures in their 2D counterparts. In a recent study, Stanford and SLAC scientists used X-rays to examine the behavior of pairs of spinons – quasiparticles that represent an electron’s spin. This experiment provides further evidence of an unusually strong attractive force not captured by the Hubbard model, the leading theory for predicting electron behavior in solids. Authors say the model fails to explain electron dynamics in cuprates, even in simplified, one-dimensional systems. Credit: SCI-HUA" (ScitechDaily, Superconductivity Mystery: Scientists Challenge a 50-Year Theory of Electron Behavior)
Things like atoms and electrons would be better particles for superposition and entanglements. But their problem is: how to protect those qubits against changes in a magnetic field. If the system can protect superposition and entanglement that makes it possible to transport information between those two particles.
The new observations about magnetism make it possible to create new fundamental states of quantum technology. What if we could make the cylinder-shaped Hall field or Hall effect and control that field? If we, or researchers, can make the Hall effect that forms a field.
That is slight inside. They can create a tube that protects the quantum entanglement inside it. The horizontal Hall effect is possible. That thing can make a new type of protective field that denies the internal disturbance. In some wild ideas, the Hall effect field can used as a Tipler time machine, or its quantum version.
"Scientists have observed the anomalous Hall effect in a collinear antiferromagnet, defying conventional theories by showing it can occur without magnetization, potentially revolutionizing our understanding of quantum materials. Credit: SciTechDaily.com" (ScitechDaily, Rewriting Textbooks: Physicists Discover Anomalous Hall Effect Where It Shouldn’t Exist)In that case the high-speed spinning magnetic field around the quantum channel. The idea is that The Hall field around those nanotubes will slow the time. In those nanotubes, the data travel between two superpositioned and entangled particles. If the fast spinning field surrounds those quantum channels that should cause time dilation in the nanotube. And that gives the quantum computer more time to operate.
Another interesting thing is magnet-free states in twisted crystals. Those magnet-free states make it possible to create electron and atomic-scale quantum entanglements. The complex system entanglements can be the key to the new types of quantum systems. Information can travel between those two complex systems through their quantum fields.
And if the system can make quantum entanglement using electrons or atoms it makes it easier to control those qubits. But the problem is the magnetic states. The system must protect those superpositioned and entangled particles against magnetic fields and especially against changes in the magnetic fields.
https://scitechdaily.com/quantum-leap-scientists-slash-atom-superposition-time-by-10000x/
https://scitechdaily.com/the-quantum-zoo-just-got-wilder-magnet-free-states-discovered-in-twisted-crystals/
https://scitechdaily.com/rewriting-textbooks-physicists-discover-anomalous-hall-effect-where-it-shouldnt-exist/
https://scitechdaily.com/superconductivity-mystery-scientists-challenge-a-50-year-theory-of-electron-behavior/
The researchers made photons interact. And that makes it possible to create new metamaterials.
Photon collision is one of the things that is now possible. When photons collide, the higher-energy photon denies that the lower-energy photon continues in its direction. The photon collisions make it possible to adjust the power of the photon impact on other materials with very high accuracy. In this text, I handle photons as material. The ability to make photons and wave movement impact makes it possible to create new types of quantum and optical binary computers.
Because wave movement can keep a photon in its position. It is possible. Wave movement, targeted to superpositioned and entangled photons can keep quantum entanglement in their form when the difference between energy levels is lower than usual. In that case, wave movement pushes photons in both directions. And the only problem is how to secure information in those superposed and entangled photons.
The researchers at Aalto-Yliopisto created quantum magnets using superpositioned and entangled electron pairs. Those quantum magnets can revolutionize materials and quantum computing. Those quantum particles can also be used to make next-generation stealth layers that control the direction in which the photons move. That thing makes those layers invisible to the observer, who stands at the side of the object, which transfers photons horizontally.
Those Qauntum magnets that are introduced in the second image are things that can interact directly with each other. In that case, the system can communicate by using radio waves. Those triplons can interact as radio crystals, and that allows for the creation of new types of communication tools.
When we think of wave movement and its interaction with photons, it makes it possible to trap photons between quantum magnets. The triplons are tools that are quantum magnets. Researchers used superpositioned electron pairs to make triptons. And trapped photons can stop between those superpositioned and entangled electrons. Those electrons can transfer information to the photon, and then the system can use the trapped photons to transport information between those quantum triplon magnets.
https://scitechdaily.com/collision-course-electromagnetic-waves-interact-in-groundbreaking-experiment/?expand_article=1
https://scitechdaily.com/tricky-triplons-scientists-create-artificial-quantum-magnet-with-quasiparticles-made-of-entangled-electrons/
https://technologyandfuture4.wordpress.com/2023/08/24/the-researchers-made-photons-interact-and-that-makes-it-possible-to-create-new-metamaterials/
The centripetal force acts in all particles. And if the rotation speed is high enough, that thing causes the situation where even elementary particles are forming the channel.
Quantum entanglement is one of the most useful phenomena in the quantum world. In that "spooky effect of distance," the system puts the elementary particles (like photons, quarks, electrons, etc.) to oscillate in the same frequency. That means the same elementary particle is at the same time, in two different positions.
Also, things like electromagnetic fields can put to superposition. When two elementary particles are superpositioned and entangled that thing happens by using electromagnetic fields like laser rays. Photon or electron clouds are also forming electromagnetic- or quantum fields. And those things can use to put even complicated quantum systems into superposition.
Theoretically, superposition is possible also between quark groups. And theoretically, things like protons, neutrons, and other kinds of elementary particle groups can be superpositioned. So theoretically, also complicated quantum systems can put to superposition.
But the thing that makes superposition interesting is that. There forms a string or wire between those superpositioned particles. And that string makes them act like some stick. When another particle at the end of that stick is moving the another will also move.
But what is that string that connects those two particles? There is the possibility that the film where the water bubble spins and stays in its form illustrates that situation.
Could there be a channel through black holes?
When a particle spins very fast that motion should form a channel through it. But if we want to make a channel through an electron. We must spin that particle at an extremely fast speed. So could black holes spin so fast that they can form a channel through the singularity? In that model, the fast spin of the object causes the situation where centripetal force pushes the superstrings away from its axle. The centripetal force could rip also quarks and leptons in pieces.
But it requires an extremely fast spin. If those channels through elementary particles are true, they can offer limitless energy solutions. That means there is a quantum vacuum in the middle of particles that is acting like those bubbles in the water drop. And if there are small quantum lightning or strings between those particles those strings can collect energy from the quantum fields.
When radiation or wave motion, which mission is to duplicate particles hits the primary particle it increases the spin of that particle. There is a possibility that there is a forming tunnel through that particle. And that tunnel forms a quantum tornado through space. When that quantum tornado impacts another particle, it will start to oscillate it.
But is that string some kind of wormhole? That is an interesting question. If we think that there is a hypothetical transporter particle graviton, that transports gravitation, there is the possibility that the tunnel through electron or quark forms between hypothetical gravitons. If there is a graviton inside all particles, which have mass. The extremely fast spin will create a tunnel that unmasks the graviton.
That thing causes interesting speculations of black holes. When we think about the possibility of the superposition of things like stars. We must understand that superposition is possible only between similar elementary particles. And superposition between quark stars is possible because those hypothetical stars consist only of quarks.
Also, the black holes can turn into superposition. The spin of black holes is extremely fast. And that thing can cause a situation where superstrings or gravitational channels. That forms a situation where singularity can turn to the side from the rotation axle.
In that case, that thing could form a channel through the black hole. But that thing is only a hypothetical model. The thing behind this model is that centripetal force affects all systems. And theoretically, even elementary particles can break into bites by spinning them fast enough.
When we are thinking about the quantum entanglement it can use to make the most powerful engines in the world. The engine itself can be the two- or tri-layer graphene structure. The energy flows in quantum entanglement to the lower energy areas.
And that thing makes it possible to make the engine where quantum entanglement is driving energy in the opposite direction where the craft will travel. That kind of graphene structure-based engine makes it possible to create a craft. That can change its flight direction very fast and that thing can make the UFOs:s possible.
Another thing that quantum entanglement can use to make things invisible. The quantum entanglement makes the quantum hair around the structure. And that denies the reflection to the observer's direction. So quantum hair acts like an owl's soft feather suit. It denies the reflection of the sound
That thing can be the key element to the next-generation stealth. One thing that can make the craft invisible to the radar infrared and the human eye could be the quantum rotor.
The quantum rotor is the quantum entanglement or other quantum structure that rotates like a rotor. The rotating quantum structure will push photons to the direction that can be the back of the craft. So that thing can be the thing that makes objects invisible.
The size of the quantum rotors is far smaller than the nanomachines. And that thing allows them to operate also at the high-speed flight. The quantum rotors can also be the tools for getting closer to the speed of light. When the structure is moving at a very high speed. The quantum rotors can put to push the quantum fields backward. And that thing makes the craft invisible to the human eye.
In the "Bermuda system," the ion cloud can cause the object loses its electrons. And the ion flow or loss of electrons can cause the object is vanishing.
The thing is that the ion or especially the proton flow will make the object invisible to radars. That thing can explain the vanishing of some aircraft. The proton flow will pull electrons out of the material.
In some theories, the ion field that is forming around the aircraft or ship can create the effect called the "Bermuda triangle". If a proton cloud surrounds the object. That thing removes electrons from the object. And that destroys the object.
In some more or less exciting visions, the loss of some propeller aircraft causes by the tests where the air will ionize in the propeller. And then, magnets will pull those ions to the aircraft's wings causing an airflow that is creating the buoyancy. If that system is not made the right way the ion flow destroys the aircraft immediately.
So was the fate of Flight 19 famous 5 TBM-3 Avenger torpedo bombers which vanish near Bermuda on December 6 1945 the ion flowed around the aircraft. If the propeller would ionize the nitrogen and oxygen in the air. That thing can destroy the aircraft immediately. That kind of ion cloud can cause the vanishing of almost all objects because they are pulling electrons away from an object or they can impact an object causing that material to vaporize.
https://www.nasflmuseum.com/flight-19.html
https://artificialintelligenceandindividuals.blogspot.com/
"Rydberg parity QAOA protocol. Arbitrarily connected optimization problems can be parity encoded in a regular geometry of neutral atoms trapped in, e.g., optical tweezers. After initializing the Rydberg quantum processor in an equal superposition state. "
"Generating variational wave functions by applying QAOA unitaries. Only requires local control of laser fields generating quasilocal four-qubit (square boxes) and single-qubit gates (disks). Credit: Physical Review Letters (2022). DOI: 10.1103/PhysRevLett.128.120503" (Phys.Org/Researchers develop quantum gate enabling investigation of optimization problems)
The main problem with a quantum computer is the input-output process. The computer or Turing's machine is useless without the ability to introduce information to the user. The quantum gate that is introduced above this text can make the communication between the quantum and binary systems more flexible.
There are three main problems with quantum computers.
1) How the system can transfer data between quantum and binary systems. That ability is required is that screens and keyboards are using binary systems. The quantum computer is used through binary systems that input and output data in and from the quantum systems.
2) Quantum computers are sensitive against outcoming effects like electromagnetic radiation. And even gravitational waves can disturb the quantum system.
3) Quantum entanglement stays only a short time. The quantum entanglement stays for about ten seconds. After that, the system must reform that thing.
That's why data must store in fast-operating quantum memory units until it can be driven back to a re-adjusted quantum system. Without that ability, quantum computers cannot handle long-term calculations.
Also, even if long-term quantum entanglement is possible. Data must be backup copied. The reason for breaking the quantum entanglement could be a sudden electromagnetic impact like an eruption of the sun. Or gravitational waves can break the quantum entanglement.
So how the quantum computers can be easier to use?
The single-photon source that paves the way for quantum encryption is an interesting tool. That thing makes it possible to make quantum computing much easier.
In that system, the data will load to single photons. That is launched into a quantum computer. And then those things will superposition and entangled. The single-photon source can use to transmit data to the single electrons.
That kind of vision is interesting. And the single-photon source can make it possible to transmit data in qubit form over long distances. For long-distance data transmission. Those information carrier photons must cover against outside effects. And in that information photons will load into the laser ray. And then the laser ray will transfer them to the receiver.
The lasers or photons can also derail electrons through graphene. The photon will push electrons between the graphene layers. Then the photonic interaction will pump the data from the electron to the photons that are the heart of quantum computers. And the data that those superpositioned and entangled photons are carrying will transfer back to electrons and then to graphene.
The quantum gate that suppresses the data from the multi-qubit system to one qubit will make it possible to create better interaction between binary and quantum systems. The system benefits the Rydberg atoms in its operations. And that thing can make the quantum computer easier to use. The new quantum gate can help to optimize the communication between qubits and binary systems.
There are many problems with quantum computers. One is noise or turbulence. Superpositioned and entangled photons are very sensitive against outcoming effects. And one way to increase the resistance of quantum computers is to increase the power of the quantum system.
A Quantum computer's radiation will push disturbing radiation away from the computer. Another way is to use some heavier particles like protons or electrons for making quantum entanglement.
The problem with those heavier particles is that they are reacting to magnetic fields. The new programmable quantum sensors also make it easier to separate the information from multi-stage qubits and transfer it to the binary system.
So the quantum entanglement must protect by using powerful magnetic fields. Those kinds of magnetic fields are used in the fusion tests. And they can make the points of the heavy-particle quantum entanglement stable.
https://phys.org/news/2022-03-derails-electrons-graphene.html
https://phys.org/news/2022-03-quantum-gate-enabling-optimization-problems.html
https://phys.org/news/2022-03-single-photon-source-paves-quantum-encryption.html
https://phys.org/news/2022-03-technique-quantum-resilient-noise-boosts.html
Image) https://phys.org/news/2022-03-quantum-gate-enabling-optimization-problems.html
Schrödinger's cat is the thinking experiment that can introduce the imperfectness of quantum mechanics when we are transferring from the atomic level to microscopic systems. The problem is that we know that some of our observations are wrong. When we boil water we know that water is vaporizing. And sooner or later the dish is empty. We might ask where water is? We know that the water molecules or hydrogen and oxygen atoms that formed those molecules still exist.
The idea is that in quantum mechanics the particle can at the same time exist and not exist. Wave-particle duality means that even if annihilation turns the entire particle to wave movement that wave movement can turn back to that particle. So if we want to connect Schrödinger's cat with the particle-wave duality. It means when annihilation turns particle to wave movement it is not lost. It just changed its form.
Schrödinger's can is the cat that is at the same time alive and dead. The problem with the quantum mechanic theory is that it's too absolute. The material is or material does not exist. The problem with too absolute theories is. They don't take into account transformation. When we are boiling water that thing seems to vanish, but we know it just turns its form. That means water molecules exist. But we can use them for nothing. So water that was in the dish existed. But that water lost its meaning to us.
In quantum theory, the cat can be at the same time dead and alive. And that thing is determined as Schrödinger's cat. That the most famous cat in the world is the model of superposition. Term superposition means the material like particle or particle group can be at the same time at two different positions. The position can be in energy, it can be in space or place, or it can be in time.
The position can mean that the particle is in two locations but the particle can also have an internal energy state. That does not affect its core. Or the superposition can mean that the oscillation of two particles or particle groups would synchronize and that thing makes those particles are like the same particles.
Because elementary particles, like electrons or photons, oscillate at the same frequency they are like the same particle. When they are under stress by radiation they turn to the same particle. In quantum teleportation, the radiation is connecting two particles.
And when another side of that thing is moving. Also, another part of the particle pair is moving. The superpositioned and entangled particles are connected by the "stick" of radiation. There is no limit in the length of superposition and superpositioned and entangled particles can use to make the real-time communication to another star. That thing is called quantum teleportation.
But when we are thinking about things like are cats dead or are they alive. We can also determine the words "Alive" and "dead" by using some other terms. At that moment we can replace the word "alive " by using the word "thing that means something to us". And word "dead" means that the thing means nothing to us.
Let's take one example. What if the cat carries a USB stick that involves some important information? So if that USB stick is put to the collar? And the cat lost that thing, the cat means nothing for that mission. That means from the point of view that cat is dead. Of course, it can be cute or a nice pet. But that cat has no information it has nothing to do with its mission and its dead.
But let's think otherwise. The cat can die and there is no collar. But there is the possibility that the USB stick is surgically installed in its body. So the cat still means something for the mission. It still can carry important information even if it's dead. So that means the cat can be alive and carry data that has a purpose even if it's dead for somebody else. At the end of this text, I must ask: "why Schrödinger didn't use water and dish in this example"?
https://en.wikipedia.org/wiki/Schr%C3%B6dinger%27s_cat
Another name for the "Butterfly effect" is Lorenz's strange attractor. In this text, Lorenz's strange attractor and attractor mean Lorenz's butterfly. Or simple "Butterfly effect".
In data security "Butterfly effect" can use for synchronizing the oscillation circuits. That means nobody outside those synchronized systems cannot read the information that travels in a superpositioned system. The system detects if somebody tries to put the antenna in the system. If something turns in the (Lorentz's strange) attractor. The system detects changes in the level of the magnetic field.
Same way if the superconducting wire will touch by an outside antenna that causes energy to flow away from the wire. That means the receiving voltage would not match the calculated level. The superconducting systems have no resistance. So the energy level that is transmitted in the superconducting system remains the same when it reaches the receiver. If something conducts electricity away. That means there will be a loss in the voltage level. And system recognizes that thing and makes alarm of the attacker.
Lorenz's strange attractor or Lorenz's Butterfly ("The Butterfly effect")is a perfect tool for synchronizing magnetic fields. In that process, magnetic field oscillation can multiply. The power of the magnetic fields must not the same. If the oscillation of the magnetic field is the same. But strength is different energy flows to lower energy areas. That allows transmitting data in quantum computers.
When we want to make two identical magnetic fields we can create Lorenz's butterfly around those two objects. The attractor can use to transfer data from binary system to quantum system.
That thing can also create to multiply qubits. And that thing can be a revolutionary thing in quantum computers. By using a series of qubits is possible to make the solid-state quantum annealing quantum computer or qubit.
One version of the quantum annealing system can be the carbon nanotube where Lorenz's strange attractors are transferring data between those carbon atoms. Or carbon atoms can be replaced by using fullerene balls.
The qubit can be the noble gas atom. Trapped inside the fullerene balls. And the radiation stress will transfer the oscillation between those atoms. The fullerene ball acts as an antenna that receives the signal from the noble gas.
The attractor can use to make two identical data groups. And that thing makes it possible to create the error detection system for a binary and quantum system.
The main problem with the error correction is how to detect errors? The error detection requires a minimum of two identical data flows. The computer will compare the differences in those data lines. If there are differences in those data flows there is some kind of error. And the error can be in the input. Or it can be caused by the outcoming non-controlled effect.
By using Lorentz's attractor is possible to make the surrounding data flow in quantum computers. And that thing is making it possible to make the system that calculates series and extremely complicated algorithms. That kind of system can solve problems like are there zero points in Riemann's conjecture? Lorenz's strange attractor is the model of the system which is strengthening itself.
When Lorenz's strange attractor gets outcoming energy. The energy level increases until the system can transmit energy somewhere. That thing makes it possible to transmit qubits in the quantum USB. If data can store in the solid material in the form of qubits.
The Lorenz's attractor can use to transmit data to the main system. The other part of the attractor will get an energy push. And that makes energy flow to the lower energy area. So that thing makes it possible to transport data between systems.
https://en.wikipedia.org/wiki/Butterfly_effect
Image: Pinterest
https://thoughtandmachines.blogspot.com/
This thing is a breakthrough for making new quantum networks that are extremely safe. Extremely safe quantum networks allow the creation of the WLAN that benefits the abilities of the quantum computer. That thing allows sending data through the air by using qubits.
And that allows connecting quantum computers without binary layers. The thing is that the connected quantum computers are the single quantum system. And the bottleneck is how to introduce processed data.
But the quantum entanglement can also transmit data in binary mode. There might be two lines of quantum entanglement. When Line 1 is in use the value in the system is 0. And line 2 means the value of the bit in the system is 1. That means the quantum entanglement can offer secured data transmission in the binary network.
The thing that makes quantum entanglement safe against eavesdropping is that the superpositioned and entangled particles are hard to see from the sides. That means the eavesdropper must cut the quantum entanglement. And that causes a cut in the data line. If eavesdropping has been detected the access codes to the system can be changed.
This kind of thing can make by using regular electric wires or laser rays. But the detection of hacking is based the error detection. If those lines are cut there is an error in the data flow. Also if somebody conducts the electricity away from the wire or laser ray, that causes that the signal will turn weaker than it should be.
The system requires four connections for error handling. Detection of errors can be made by using two data handling lines. If the data that travels through those lines is similar. That means there are no errors. If there is a difference something affects the network.
When people are talking about secured data transmission. They always forget to mention that two things can danger data. The destruction of data can happen on purpose. Or the destruction of the data can happen by accident. It's the same for the system what is the reason why the data is lost. The lost data means that everything must be driven to the system again. Of course, there is some kind of security dimensions.
But the fact is always the same. Every lost data must drive back to the system without depending on the reason why the data is lost. A broken hard disk or computer virus is both making the system useless. There is of course possible to eavesdrop on the quantum-based binary WiFi.
But those kinds of actions can be seen when the quantum entanglement, is cut. And there are differences between data masses that are sent by using that kind of system. The data must use two lines and four connections. If the data is similar in both lines. That means there is nobody who has tried to see data.
https://www.scientiststudy.com/2020/02/new-record-researchers-have-tangled.html?m=1
Image:https://www.scientiststudy.com/2020/02/new-record-researchers-have-tangled.html?m=1
https://networkedinternet.blogspot.com/
The reason why things like superconducting materials are important for quantum computers is that determine the energy levels. Or states of qubits are easier in the superconducting material.
When we are thinking of the qubit as the car that travels on the road the beginning energy level determine which main road the qubit takes. And the sub-layers or states of energy determine the sub roads the qubit uses in the system.
But if we want to make a quantum computer that operates at room temperature. We could use the quantum annealing in the crystal. The system requires information on the brightness of the crystal.
If the system knows how much energy the material absorbs at a certain distance and temperature. That thing can make it possible to create a quantum computer. That can operate on a large temperature scale.
If the quantum entanglement inside solid materials like diamond crystals is possible. The diamond crystals can anneal by stressing the carbon atoms by using electromagnetic radiation. But also flat solid materials are suitable for the quantum computer. The system can anchor by using the combination of pressure and low temperature in the superconducting state.
That thing can make it possible to create man-looking robots that have internal quantum processors inside their bodies. That thing would be the next revolution in quantum computing.
Also, the ability to superposition baryons like protons and neutrons is making it possible to make new layers and routes for a qubit. Baryons are a subtype of hadrons and that thing means that protons and neutrons are hadrons, subtype baryons.
The ability to superposition the quarks inside the hadron-baryons means that. Those things can use to create the quantum network. By creating that network can be done using superpositioned and entangled quarks that are forming those baryons.
https://phys.org/news/2021-11-key-witness-scientists-spooky-quantum.html
https://scitechdaily.com/creating-dynamic-symmetry-in-diamond-crystals-to-improve-qubits-for-quantum-computing/amp/
https://www.techexplorist.com/first-ever-simulation-baryons-performed-quantum-computer/42337/
https://en.wikipedia.org/wiki/Baryon
https://en.wikipedia.org/wiki/Hadron
https://thoughtandmachines.blogspot.com/
Crossing the speed of light is quite an easy thing if we can travel between quantum fields. The requirement is that we would not touch or impact any quantum field. In this case thing of crossing the speed of light is possible only for the extremely small-size particles. The idea of the quantum whip bases the idea.
That when the head of the rotating whip crosses the speed of sound it sends the sound. Moving string transfers energy to the air molecules. And the sound is forming a similar way with the sonic boom of the supersonic aircraft.
In the quantum world, the slam is the flash of light. So when mirror particles like electrons and positrons are impacting the stings that are forming those particles are hitting each other and quantum fields like a whip. When those quantum whips are hitting quantum fields. They are sending energy load what is like the slam of the whip.
The thing is that when we are creating an idea of the quantum time machines, we are thinking possibility to send the probe to the future. That thing can make by accelerating the particles in the particle accelerators or sharper saying torus-accelerators. But how to bring information back to the past.
One of the ideas that can use to solve this problem. Is simple to make the superpositioned and entangled particle pair. The other side of the superposition would make the particle accelerator. And then another would be in the middle of the particle accelerator.
The quantum whip could make it possible that the particle that rotates at the cyclotron would short time cross the speed of light. The idea is that the particle that orbits in the particle accelerator would re-superposition outside the particle accelerator. That thing makes so-called borderline crossing the speed of light possible. The idea is the same with the neutrino detector.
When a particle that has mass will come from vacuum to medium, that thing will cause that short moment the particle will travel faster than the speed of light. Slowing the speed of a particle that has mass takes a short time and during that thing, the slowing particle will send the flash of light when it releases its energy to the medium or its quantum field.
That means the particle would bring the data from the future. The slowing time of a particle depends on how energetic or how massive it is. So the extremely high energetic particle could bring the data from the future to the past by using the quantum whip. That means an extremely short-term crossing of the speed of light at the quantum level.
Image: https://upload.wikimedia.org/wikipedia/commons/5/57/FirstNeutrinoEventAnnotated.jpg
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In some theories, the universe is a series of superpositioned particles. That means there should be possible to create a network of superpositions that fills the entirety. The thing is that the superposition cannot ever be fully perfect. The size or energy level of those particles is always a little bit different. The energy channel that travels through the quantum fields is always interacting with the other quantum fields.
When researchers are making superpositions in the laboratories, they are making the superposition or simply synchronization of the particles. By stressing them with the electromagnetic radiation. The thing is that the synchronization of the oscillation requires only enough long-term electromagnetic stress. And the time what this thing requires depends on the energy level of the radiation.
The thing is that after the Big Bang, some particles were superpositioned. And the fact is that if the size of the superpositioned particles is different than the original particle the wavelength that those particles send is different. And that means the other part of the superpositioned particles is invisible, especially in the case that another particle is a so-called virtual particle.
If we are thinking about the series of superpositions. The size of the particles would turn always smaller and smaller. The term of a virtual particle means that the size of the quantum field of the small particle is turning larger. And that means it turns to another particle. When superposition ends.
What if we could create the virtual hadrons? Hadrons are forming three quarks. Creating the virtual hadrons requires that the quantum field that is around quarks would transfer around quark or electron. The idea is that the power field around those particles will strengthen by using quantum annealing. Then the oscillation of the wanted hadron will transfer to those quantum fields.
That virtual particle will lose its power field. And it will disappear or turn to the original particles. Theoretically, electromagnetic radiation can use to create things like virtual protons by stressing quarks with electromagnetic radiation. In that case, the proton would superposition to quark. The protons are made of three quarks. So in the case of superposition, the system requires free quark.
Then the electromagnetic radiation is sent through a proton. Would send to quark or electron what increases its power field. In that case, the quantum field around three quarks that form protons would superposition to the lonely quark or electron. That thing would make it possible to create virtual particles.
A more interesting thing would be that if the quantum field that forms neutron can transmit around quark or electron. That thing makes it possible to create the virtual neutron. So the virtual particle is the power-, or quantum field that oscillates a similar way with the original particle but is formed around the smaller particle.
https://en.wikipedia.org/wiki/Hadron
The cosmic ADSL.
When we want to determine the ability to see the future we might use the term "how to get information from the things that happened faster than other people?". Between the planets and stars, this is possible. The answer is to make the quantum entanglement between Earth and other planets or stars. That thing might be cosmic ADSL- communication system in the far away in future.
If we would use superpositioned and entangled particles for communicating between Earth and Alpha Centauri we can transmit data through the distance with very high speed. So by using the superpositioned and entangled particles is possible to transmit data faster than the radio waves are traveling between those distances.
What is the time? Some people say that it's a loss of energy or particles changing to wave movement. So that's the time for the physicist. When we are thinking about ourselves and our relationship to time we all live in the past. Everything that we see and what we hear has happened a little bit before the information can reach our eyes.
So we see things that are happening a short time before. The photons or soundwaves will impact us. This means the time is the "time that the particle or wave movement uses when it travels from a certain point to another".
So can we see or travel to the future? The fact is, we can travel to the future. It's quite easy by creating spacecraft that can travel at the speed of light. The time dilation keeps us young. But the problem is that how to get information back to the past. This is the problem with time travel. Going to the future is easy. But getting information from the future to the past is the problem.
But what if we would determine the "ability to see the future" as the ability to get information before other people can get it. Theoretically, this thing is possible to make but it needs a very long distance.
We can see to future "very easily" by using the "spooky effect at a distance" or quantum entanglement. The superpositioned and entangled particles can bring information from long distances. With a speed that is higher than the speed of light. The reason for that is that those particles are like a stick. When another particle in that particle pair is moving another one is also moving. So theoretically we can shoot spacecraft to Alpha Centaur.
And in that craft would be the superpositioned and entangled particles. Another side of those particle pairs would be at the laboratory. But that thing requires extremely high- energy levels that the quantum entanglement can maintain in the long distance. Making this thing in real life is quite more difficult than making theoretical text about it.
If we would transport data using quantum entanglement the benefit of that thing rises when the distance is getting longer. That means that by using superpositioned and entangled particles the person in Alpha Centauri would get information immediately when the normal radio waves would transport data 4,5 years between the Sun and Alpha Centauri.
So in this case the person in Alpha Centauri doesn't see to the future. That creature would get information from Earth sooner than the person who uses traditional radio waves. But the thing that the person sees happened in the past in both cases.
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This is a small addition to the qutrit teleportation text. The idea of this test agreement is that the annealing of the first chamber is transported to another chamber. And the easiest way to make that thing is just making the quantum annealing of the quantum fog in chamber 1. Resonate the particles of quantum fog in chamber 2.
Researchers can create that quantum superposition by using two similar particle groups. When the first particle group will get the energy that thing will resonate with the particles in the second chamber. The term superposition or quantum teleportation means. The oscillation of those particles is transferred to other particles.
In the cases of electromagnetic fields, superposition means that two electromagnetic fields are oscillating with the same frequency. When two electromagnetic fields are facing and their wavelength is the same but the other is stronger. The stronger electromagnetic field would synchronize the lower energetic field with it. And they are starting to oscillate with the same frequency.
https://en.wikipedia.org/wiki/Quantum_superposition
The difference between binary and ternary computing is very simple to explain.
The quantum computer or qubit is the tower where each of the layers is like a binary computer. But what if the binary system in that kind of replaced by using the ternary system. That will increase its power.
Driving the code in a binary system looks like this:
Program code 1(HALT)Program code 2(HALT)Program code 2(HALT)...
The "HALT" is the separator that tells the computer to stop because the code line of the program ended. And the processor must be stopped to take the next code line. And after that, the processor will tell to the sender that is ready for driving the next program or code line.
In the binary system, the computer has only two positions. The number 1 (one) means that the electricity is traveling in the wire. And number 0 (zero) means that electricity is off. This thing makes that system slow. The reason for that is that the system needs to separate different bit lines from each other.
So the program must have a sub-program (HALT) that stops the computer before it gets a new code line for handling. The problem with computers are they quantum or binary computers is that the layer that receives the new code line or program must stop before it can receive the next code line.
The sender must confirm that the layer is ready for transmission. When the code line is ending there is involved the HALT code that tells the program ends. Then the layer sends the mark that it's ready for the next program and that thing takes time.
In the ternary system, the number 2 will tell that the program is ended. In the ternary system in the place of number two is 10. The thing that the program itself tells the sender that its code line ended makes the system more powerful. There is the possibility that the data line will route that way that there are no conflicts. And that thing makes the BizTalk unnecessary. This thing will turn quantum computers and binary computers more powerful.
https://en.wikipedia.org/wiki/Ternary_numeral_system
https://thoughtandmachines.blogspot.com/2021/10/quantum-physicists-are-teleported.html
“An expanding mini-universe could counterbalance the collapsing matter of a star, thereby creating a stable gravastar. Credit: Daniel Jampol...