Showing posts with label Lorenz's strange attractor. Show all posts
Showing posts with label Lorenz's strange attractor. Show all posts

Tuesday, September 30, 2025

Lorentz’s Strange Attractor and discussions between complex quantum systems.




“Illustration showing photon emission from a nanodiamond and light directed by a bullseye antenna. Credit: SciTechDaily.com, inspired by Boaz Lubotzky” (ScitechDaily, Record-Breaking “Sparkle”: Scientists Unlock Diamond’s Quantum Potential)


Diamond’s new quantum potentials. 


Diamond can have multiple new potentials. And one of them is that. The nanodiamond can act as a quantum switch. That can share information with the quantum receivers. This kind of system. Works like this. The transmitter sends information into the diamond, using the TCP/IP style networking protocol. Each of those data packages has a serial number. And when the quantum system sends those data packages. The nanodiamond transmits those data packages to the quantum receiver circle, which surrounds this diamond. 

The system eliminates overlaying data packages and transports them to the receiver using different routes. That makes it possible to create a quantum network, or even a quantum computer, that can operate at room temperature. The system uses the diamond. To share optical information with the receivers that are around it. The diamond must be put. Into the position. Where its corners are aligned with those small-sized photovoltaic cells. Then those photovoltaic cells transform photonic information. Into the electric information.  There is also a possibility that the system forms the Lorentz Strange Attractor around those nanodiamonds. That is one way to make them discuss with each other. 

There is a possibility that nanodiamonds can make material invisible by aiming all radiation at a 90-degree angle to the material layer. And if that layer can conduct that energy in one direction, or below it, that makes the material invisible to an observer who looks at the layer from above. That thing means that. Diamonds aim all reflections in a direction that the reflection cannot reach the observer. 





“Artist’s impression of two nuclear spins, remotely entangled via the geometric gate applied via the electron. Credit: Tony Melov / UNSW Sydney” (ScitechDaily, “Like Talking on the Telephone” – Quantum Breakthrough Lets Individual Atoms Chat Like Never Before). That means electrons travel around two atoms, making the structure. That looks like Lorentz’s Strange Attractor. The new thing could be that the quantum strings could surround two atoms. And that turns their quantum fields into a superposition. In this experiment, the quantum information exchange can happen between an atom’s nuclei. But if the system could make the superpositions. Over the electron shells. That would be an even bigger breakthrough. 





“Lorenz's Strange Attractor” (Wikipedia) 



And a new experiment made atoms discuss with each other. 


The new way to make superposition between complex, or atom-scale systems, is based on Lorenz’s Strange Attractor. (Also Lorenz Attractor (Lorenz System), in this text, Strange Attractor, or Attractor)The system makes a superposition between the quantum fields that surround atoms. And that is one of the biggest things. In the history of quantum computing. Or, if we are sharp, that test made the atoms exchange information. The Lorentz Strange Attractor is the thing that could make it possible to create new types of data storage. 

Those Strange Attractors can also make it possible to create the quantum superposition in the vacuum. But at high temperature. There are two ways to adjust the energy level of the Lorentz Strange Attractor. First is. To push outside energy to the Strange Attractor. The second way is to push the Attractor in the smaller form. If there is no place where that energy can go. That means the energy turns denser. 

Theoretically, information can be surrounded by the Strange Attractor forever if there is no power loss. The Lorentz Strange Attractor means a system.  We can call a quantum perpetual motion machine. In this text, Lorentz Strange Attractor, Strange Attractor, and Attractor mean the same thing.

The Lorentz Strange Attractor can harness energy from around it. And if an attractor cannot realease its energy, its power increases. The thing that makes the Butterfly Effect is that the butterfly that flaps its wings creates a hurricane. In a situation where the system cannot release its energy. This situation forms around those whirls that the butterfly forms. The outside wind cannot fill those whirls. Because there is a particle flow surrounding them. 

Can the Lorenz’s Strange Attractor create a situation where a butterfly that flaps its wings creates a hurricane? That thing is possible in very stable systems. The requirement is that the wind. That which surrounds the whirl must have a high energy level, so that outside energy cannot break the whirl. So if a butterfly flaps its wings in a calm morning, when the energy level in the atmosphere is very low, it can create a situation where the airflow from around it cannot break the wind that moves around the whirl. The low pressure in the middle of the whirl keeps it in form. 

And the whirl gets its energy from sunlight. When that whirl forms, the requirement for the butterfly effect is that the whirl must start to release its energy from the middle of it. If that energy flow goes up. And below the airflow that keeps the whirl in its shape. If that energy reflects to the whirl with energy that is too powerful, the flow that surrounds the whirl can’t keep it in. And that thing breaks the whirl.

One of the examples of the force of Lorentz’s Strange Attractor is the black hole. There, the gravity field forms the Strange Attractor. Along with the material that surrounds the center of the black hole.  The outside matter, radiation, and quantum fields push the attractor in its form. That means. The black hole’s gravity field may look like number eight. This means the outside energy cannot crush the gravity field. This means that when the black hole forms, its gravitational field turns small and dense. Then it starts to feed things into itself. 

There is a possibility that all quantum fields look like a Lorentz Strange Attractor. Those fields travel through their center. And if that thing is true. All particles are surrounded by the field. Which looks like eight. That field drives information into the particle, but it also throws that field away from the center. The name of that field depends on which fundamental interaction it transmits.  This means that the fundamental interactions. Gravity, strong, and weak nuclear forces, and electromagnetism form the “eight”-shaped field. This thing means that the Strange Attractor explains things like gravitational waves. 

Sometimes, the far side of the Attractor releases wave movement. The Strange Attractor packs energy into the crossing point. And another interesting thing is that. Will the field pull or push, depending on the energy flow in the Attractor? When energy flöow crosses an attractor, it can form a soliton. If energy travels in very thin wave packets that don’t touch each other, the soliton will not form. The soliton is the thing. That can pack the entire Attractor into one point. Or the soliton can also break the Attractor. But if the soliton forms the whirl inside it, and it can collect energy into a kinetic form, that can keep the Attractor in its form. The existence of the Attractor depends, in that case, on the Solitons ' or spinning standing waves’ ability to bind energy into it. 


https://scitechdaily.com/record-breaking-sparkle-scientists-unlock-diamonds-quantum-potential/


https://scitechdaily.com/like-talking-on-the-telephone-quantum-breakthrough-lets-individual-atoms-chat-like-never-before/


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


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


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

Thursday, February 3, 2022

The butterfly effect can be a useful tool in quantum computers.



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/

Gluons and the strong nuclear interaction.

When we think about energy flow from the strongest to the weakest. Free energy. That causes an atom’s decay. It is formed. Or. Released in t...