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

Tuesday, April 29, 2025

The groundbreaking experiment proved the proton quantum teleportation true.


"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. 

The proton quantum teleportation is one of the most interesting things in the world. Data or information traveled between two protons. That makes this thing the new model for quantum computer's qubits. The proton-based qubits are interesting because protons are easier to control than photons. The problem with proton is this. The proton is a much more complex system than a photon. 




"The valence quark content of a proton. The color assignment of individual quarks is arbitrary, but all three colors must be present. Forces between quarks are mediated by gluons." (Wikipedia, Proton)

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

Friday, September 30, 2022

There are two ways to make quantum systems exchange information.

 

The first method is to raise the energy level of the particles and make them resonate with the same frequency. Another method is to use two connector particles and use a very low energy level as a medium that transmits information between the systems. 

The problem with quantum communication is simple how to adjust those systems in the same frequency. Above this text is Maurits Escher's painting "Waterfall". And that thing can introduce one of the biggest problems with the quantum system. 

If we want to change information between two towers of that system, we must adjust those towers in the same frequency. And then make the quantum entanglement between those towers. 

Because those towers are part of the same quantum system, there is the possibility to make those crystals resonate and exchange information. But then we can think that the actor that sends information will throw the information from another tower to the next there is the possibility that the information transmitted will miss that receiver tower. 

There would be outcoming energy that destroys the resonation. And that thing makes information go somewhere else it should. 

We always think that information must travel through the system from upward. In that way, system operators would rise the energy level of the quantum participants of the communication. And that thing requires very high accuracy. 

The quantum entanglement and superposition are like a bridge between those towers. In that case, the energy level of those towers will rise to the same level. And then the material or elementary particles will put to resonate with the same frequency. Then the sender side of the superpositioned quantum entanglement will rise to a higher level. 

And that makes the information flow. When the energy level of quantum entanglement rises to the same level, the radiation that the sides of that quantum entanglement will break the entirety by pushing those superpositioned and entangled particles away. That's why the quantum entanglement can stay only a short time. 


The low-energy communication model. 


But there is another way to think about quantum communication. If the system wants to transmit information between those towers it can use four actors in that process. The first actor can drop the information to the second actor. 

That stands at the quantum structure's base floor or base energy level. Then that actor transfer information to the actor that is below the second tower. And the third actor will drop the wire and pull that message or information up to the second or receiving tower. 

Or airflow or energy that is driven behind (or below) that particle. Rises information to the particle at the top of receiving tower. 

There is needed two actors on the ground floor is simple. The system must drive information under the receiving tower. So that's why there needed two actors. And the receiving actor's energy level must be lower. 

This thing is called under-energetic communication. In that version of the communication, the system falls information to the lowest possible energy level. The system drives information to the Bose-Einstein condensate. 

Then that condensate will transfer information to the 2D quasiparticle. And then the laser ray will drive behind that quasiparticle and that makes the information travel from the quasiparticle to the top of the receiving tower to a particle that is waiting for the information. 

The thing that makes this process difficult is the complexity of the system. It's difficult to find the receiving tower in complex systems. Adjusting those systems is very hard. The information transporter must find the right route to the receiving tower. And that is very difficult. The route can be a series of particles that resonate with the same frequency but the energy level turns lower all the time. 


https://artificialintelligenceandindividuals.blogspot.com/



Monday, September 26, 2022

Writing about systems





The universe is full of systems. And actually, it is the system itself. But if we want to make things like quantum computers, we must limit the number of participants. Or the system turns too hard to control. 

When you make systems, first you must separate the system's actors from another entirety. Or the system turns impossible to control. The participant of the quantum system is quantum particles and electromagnetic fields. 

Systems turn very complex easily if they are too big. In the system, every participant has a role. If some participants' energy level is too low. That means the other participants must deliver energy to it. And if one participant's energy level is too high, it shares energy with other participants. If all participants are at the same energy level. That means information cannot travel in the system. 

When you want to make some kind of system, you must separate the participants of systems from the environment. Otherwise, the communication with those participants will not be successful. In quantum systems, the separation can be done by using the energy level and then adjusting the oscillation of the participant with the same level. The base energy level is the thing that separates the entirety of the system from its environment. 



The quantum system is like a tree there are leaves around it. Those leaves are the particles that have similar oscillation and the tree is the thing that has a similar frequency but the energy level is higher. In that kinds of systems, the energy flows from the particles with a higher energy level to particles that have the same oscillation frequency but a lower energy level. 

That separation can raise or lower the energy level of those participants. Rising the energy level is easier to make. And the higher energy level is easier to control than the lower energy level. When we think about the quantum entanglement that plays a vital role in quantum computers we must realize one thing. The energy level between the ends of the quantum entanglements must be different. 

When the energy level on another side is higher. That allows the information travels longer in the quantum entanglement. The thing that destroys the entanglement is that the system reaches energy stability. When the energy level between those particles is the same the data is not traveling. 

So the solution for that problem can be in 2D quasiparticles or particles at the minimum energy level. In that case, the particle or the edge of the quantum entanglement can be on the quasiparticle or particle that is in the lowest energy level possible. That thing conducts energy away from the quantum entanglement. 

If energy can flow away from another side of the quantum entanglement. That thing means energy or information can travel a long time in the quantum computer. The reason for that is the adjusting of the quantum entanglement will remain for a longer period. And that thing makes this system more powerful than ever before. 


Image and sources. 


(https://scitechdaily.com/new-invention-triggers-one-of-quantum-mechanics-strangest-and-most-useful-phenomena/)


https://artificialintelligenceandindividuals.blogspot.com/

Saturday, December 4, 2021

The encryption algorithm is always more than just Riemann's conjecture.

 The encryption algorithm is always more than just Riemann's conjecture.


The image above: Quadratic formula

(Wikipedia, Quadratic formula)


The simple algorithm quadratic formula is a good explanation of how the quantum computer will handle data. The formula is well-known from college, and it's easy to cut into pieces. So the quantum computer will cut the formula into pieces. And every part of it will send to different routes. That thing makes the work of computers lighter. 

When we are thinking that encryption algorithms are easy to break. We mean encryption that is used only Riemann's conjecture. But if we connect Riemann's conjecture with some other algorithms like quadratic formulas or Euler's equation. That increases the safety of the algorithms.

So the encryption algorithm might look like this: (ASCII-code*(Riemann's conjecture), Euler's equation*...) There are no limits for the type and number of those algorithms. That is connected with Riemann's conjecture. The name of that formula is also Riemann's hypothesis or Riemann's zeta-function. And there might be an answer 1/2. 

But that formula is still useful for prime number generators. And if that is connected with other mathematical functions it can still serve as part of encryption algorithms. 

Have you ever heard the term "jumping algorithm"? In the simplest model, every ASCII mark in the message is encoded by using a unique prime number. But in the higher level of encoding. Every each mark of the message is encrypted by using individual encryption formula. 

When quantum computer simply uses division law. It can make that kind of formula turn lighter. The thing is that this kind of example shows why code-breaking is easier to make by using quantum computers than regular computers. 

The formula that encrypts the message can be like this: (ASCII-code*(Riemann's conjecture)*(quadratic formula)). This thing means another formula that covers Riemann's conjecture. Or maybe Riemann's conjecture will use multiple times. In that case, at the first, the system would multiplicate the ASCII codes of the message. 

The term "double algorithm" means that Riemann's conjecture is connected to another mathematical formula. The fact is that the number of those formulas is unlimited. And they can be any accepted mathematical formula. So the quadratic formula is only an example of the mathematical function formula connected with Riemann's conjecture.  

By using a series of prime numbers. Those numbers are created by using Riemann's conjecture. The thing is that they might be a series of quantum decimal prime numbers. And then the next formula would mess those numbers even more. The thing is that those formulas can be any possible mathematical formula. And the only necessary thing is that the receiving system must have the ability to calculate those calculations backward. 

The thing in secrecy or encryption algorithms is. They are not simple Riemann's conjectures. Those formulas might involve Riemann's conjecture but they are not just those conjectures. High-power computers can break any code in the world. So there is necessary to make the algorithms or mathematical formulas that are making the code-breaking harder. 

And of course, the system can use so-called virtual algorithms. In those very complicated systems, all messages are not using even secrecy. They are using extremely long decimal numbers for hiding data. But only important messages are using the quantum decimal binary numbers. And the mission for that thing is that their purpose is to slow the work of the code-breaking system. 

The idea is that there might be three or five very easy prime numbers that might be from the beginning of the series. The thing is that when the attacking system breaks code. It must test every single prime number to the captured message. 


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

Thursday, November 25, 2021

Riemann hypothesis (Zeta-function or Riemann's Conjecture) is solved. And that causes the biggest vulnerability problem in the history of the Internet.

  

Riemann hypothesis (Zeta-function or Riemann's Conjecture) is solved. And that causes the biggest vulnerability problem in the history of the Internet. 




The real part (red) and imaginary part (blue) of the Riemann zeta function along with the critical line Re(s) = 1/2. The first nontrivial zeros can be seen at Im(s) = ±14.135, ±21.022 and¨, ±25.011. (Wikipedia, Riemann hypothesis)

Riemann's Zeta-function has non-trivial a zero-point if the value is 1/2. That means there is a sequence in that formula. And that sequence is the greatest vulnerability on the internet. The Riemann's Conjecture is solved in 2016 but the person would not get the prize of million dollars for solving the Millenium problem because there was something wrong with proof of that problem. 

If we are thinking that one of the most important mathematical formulas, the Riemann's Zeta function or Conjunction has zero points. That thing means that entire RSA encrypting must be made again. The fact is that nobody believed that over the 160 years old mathematical formula could produce prime numbers forever. 

In Riemann's conjecture are the non-trivial zero points in the points The real part (red) and imaginary part (blue) of the Riemann zeta function along with the critical line Re(s) = 1/2. The first nontrivial zeros can be seen at Im(s) = ±14.135, ±21.022, and ±25.011.

And the time of the quantum computers is making the old, prime number based solution where Riemann's conjecture is used for generating the prime numbers old-fashion. In the RSA encryption, the system will multiplicate the ASCII codes by using the prime number. And Riemann's conjecture is used as the generator, that creates the prime numbers for that purpose. The thing is that quantum computers can break any code that is made by using a primary computer in minutes.  

And when we are thinking about the ultimate calculation power of the quantum computer it can break traditional encryption simply by using brute force. The quantum computer would just drive the Riemann's conjecture again and again. And then it just tests all the prime numbers for the encrypted material. The thing is that the quantum computer can make in minutes the series. 

That is taking thousands of years if the attacking system would be the primary computer. And that means no system is safe without depending on is there zero points in Riemann's conjecture or if there are not zero points. The fact is that binary computers are useless against quantum computers. But the Riemann's conjecture is partially solved. There might be a zero point if the value is 1/2. But if we are thinking. 

Those systems secure the data flow created billions of prime numbers by using Riemann's conjecture. The one zero point means nothing for the regular user. If there is one zero point. The system would get the order to avoid that point or values got by using the value 1/2. 

But the fact is that the zero point in Riemann's conjecture is not confirmed, by the way, that the result is mathematically accepted. But there is a strong suspicion that Riemann's conjecture has zero point in the point of value 1/2. 

https://www.insider.com/riemann-hypothesis-solved-by-sir-michael-atiyah-after-160-years-he-says-2018-9


https://theprint.in/science/riemann-hypothesis-161-yr-old-math-mystery-hyderabad-physicist-is-waiting-to-prove-he-solved/692466/


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


Image:https://en.wikipedia.org/wiki/Riemann_hypothesis


https://thoughtandmachines.blogspot.com/


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