Showing posts with label qubit. Show all posts
Showing posts with label qubit. Show all posts

Wednesday, December 7, 2022

The "intelligent universe" theory again.



In the beginning: Spinoza.


Dutch Philosopher Baruch Spinoza (1632-1677) explained the god as nature's and universe's mechanism with no personality. So we can say that Spinoza is the creator or father of the so-called intelligent universe and simulated reality theories. The idea of the intelligent universe theory is that universe itself is intelligent. That is one of the biggest philosophical thoughts in history. 

Can plasma balls form qubits spontaneously? That thing is one of the biggest things in philosophy. Spinoza's idea about the god is that god is dominating structure because that structure is intelligent. And because there is no other so large and powerful structure. This structure makes what it wants. Without intelligence, other structures cannot resist that intelligent structure. 

That structure has intelligence and will. And that makes it dominating. The thing that makes this thing dominating is that can affect some big things. But small things like individual people are a little bit too small for that creature. Or that creature has no time to help all people in the same way. This is the way how Newton saw God. 

We can continue Spinoza's idea of god as the universe and natural mechanism with no personality by claiming that the dominating mechanism in the universe is the quantum computer that is spontaneously born. If Spinoza would live today. He might write that god is the network of the qubits around stars. 

Do you ever hear theories about the intelligent universe and simulated reality? Well maybe you are or you might hear about the "cosmic web" or "cosmic neural structure" that looks like human neurons. But that structure is the largest known structure in the known universe. 





Image 2) Cosmic neural structure. 


The idea of an intelligent universe is coming from the model where the star and plasma bubble around it can form the qubit. So when we are thinking more carefully, the term intelligent universe means spontaneously forming quantum computers. In that hypothetical system, the star in the middle of the plasma field gives energy to that plasma-based qubit. 

Can plasma-based extremely large qubits emulate human brains? That thing requires the situation where the qubit has three layers of ionized gas. The star acts as a pineal gland. And then the three layers of the plasma act as the three layers of the human brain. Superconducting asteroids could act as a memory of that hypothetical super brain. The center structure of the plasma ball can act as the diencephalon that decides what things that three-layer plasma brain should store in memory. 

Could a single human communicate with that kind of structure? If we are trying to think about this very strange intelligent structure we might think that this kind of hypothetical creature is a combination of intelligent creatures that are nested. The planet living organisms can give information for the larger parts of these superorganisms that must react. 

The fact is that the size of this kind of hypothetical plasma creature has no limit. Theoretically, the plasma channels can connect even galaxies as the most powerful quantum computer that we can even imagine. 

So smaller organisms are making simulations for the larger entireties that cannot react so fast how they must handle things. Things like plasma channels or wormholes could connect those qubits to one large entirety. The intelligent universe is a theory or model of the organism that is completely different from anything that we know. 

This type of theoretical or philosophical thought is interesting. If we think of the three-layer multi-state qubit as the computing system. That thing could emulate the human brain. But even if that kind of organism is possible we might still ask if can it feel anything. Or is that kind of thing only thinking machines? Could that hypothetical super creature feel or know even the existence of the single stars? Or could single galaxies be a little bit small thing for that kind of creature? 


https://www.livescience.com/strange-theories-about-the-universe.html


https://www.edge.org/conversation/ray_kurzweil-the-intelligent-universe


https://www.vox.com/2015/6/29/8847863/holographic-principle-universe-theory-physics


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


https://www.zmescience.com/science/human-brain-cosmos-05832/amp/?goal=0_3b5aad2288-683ab52bae-242764573&__twitter_impression=true


Image2) https://www.zmescience.com/science/human-brain-cosmos-05832/amp/?goal=0_3b5aad2288-683ab52bae-242764573&__twitter_impression=true


https://fromplatoscavetoreality.blogspot.com/

Tuesday, November 29, 2022

Researchers found how we learn.



Knowledge about a phenomenon makes it possible to model it. When researchers observe how brain chemicals, and especially proteins behave and interact with other chemicals.  They can see how brains work while they are learning something. 

We have two levels of learning, short- and long-term. Short-term memory preprocess data and then sends it through the diencephalon where the brain selects information that requires long-term storage. The need to remember things connected with negative things like danger.

Memory is formed to protect us. So that's why we remember negative things better than nice things. And this is why people who have bad or aggressive behavior stay in mind. We will remember almost all the bad experiences from school times. But good things are harder back in consciousness. 

And that's why our negative things sometimes dominate our discussions. Memory is one of the critical things in everyday life. Memory allows us to walk on streets. And if there are some problems with memory, everyday life turns impossible. 


The virus can transfer data between the brain and the computer. 


And knowledge about memory makes a new type of learning method possible. But things like chemical qubits make it possible to transfer memories from the living brain to the computer. And otherways transfer synthetic memories from computer to neuron. 

The artificial virus can act as a molecular qubit. At first, the genetically engineered cell transform neurotransmitter into DNA (or RNA) that stores information that the neuron sends to the cell.

After that, the cell creates a virus where the information is stored in the DNA form. The system could inject the virus into a cell with no nucleus DNA. That allows the DNA to control the cell without artifact effects. 

And then, that cell can send electric impulses to the receiver. The signal that this system use. Also can be bioluminescence light that this "data bacteria" send to the photovoltaic cell. 


But otherwise, the system can simply use the virus itself as a qubit. 


Then the system takes this virus to the measurement unit. That unit will load the electricity to that virus. And then DNA will pull out from the virus. The idea is that the DNA controls the ion pumps of the receiving cell and makes it send electric impulses. 

Or in some other versions, the system takes an artificial ball-shaped virus to the chamber. Then it will pull the DNA out from the virus. The system can make viruses send electric impulses and send the data to the receiver. Or the system can measure the virus' core oscillation by using the laser. And then those oscillations can turn into data. 


https://scitechdaily.com/new-tool-reveals-what-happens-when-we-learn/


https://designandinnovationtales.blogspot.com/

Wednesday, February 2, 2022

The IBM Unveils 127 qubit quantum computer.

 


That quantum computer is a big step to making fully commercial quantum computers. And those quantum computers would open new and bright visions for military and civil purposes. Quantum computers can hack any code that is made by using binary computers. And that thing means that they are causing a need to remake the entire security of the Internet. The history of quantum computers would repeat the history of binary computers. 

At first quantum computers are the systems that are locked at the calculation centers. But then they will turn to every-man machines and perhaps quite soon the regular personnel computers will turn to quantum computers. Things like programming language for quantum computers are bringing more users to them. The new programming language for quantum computers is making them easier to use. 

And user-friendly applications like AI-based code translators are bringing quantum computers to more users. That translator means that well-known computer code like C++, Python, or Jave can turn to quantum computers. And the new quantum programming language will benefit the abilities of the quantum systems. So while we are waiting for the personal quantum computers we can use quantum systems remotely. 

That thing makes it possible. That users can rent the time from the quantum computer centers. And that thing brings more money to the quantum computer projects. More projects and more solutions are bringing the quantum systems more common. But also more powerful and more multi-use. 

Quantum computers are only platforms. The abilities of quantum computers are determined by program code. And those systems might make the revolution in the civil and military systems needed to handle big entireties. The fact is that nobody expects that portable quantum computer have the same capacity as data-center-based fixed systems. 

In the same way. We don't think that a laptop is the same way powerful as a supercomputer.  But when we remember the advantage of supercomputers in the early 1980's systems had 1 mt. memory. We can say that modern laptop are far ahead of those computers. And the same thing will happen with quantum computers. 



The quantum network is at the door. The idea for the nanotube-based quantum network took from the nuclear test "Ivy Mike". 


When the first full-scale thermonuclear weapon detonated at the Marianna archipelago radiation from that bomb was conducted to the sensor by using a vacuum tube. That allowed those particles to reach the sensor before the particles that are traveling in the air. And that made it possible to observe the particles that were released from the hydrogen bomb. 

The quantum wires will protect against outside radiation effects. And then those nanotubes will be covered by electromagnetic fields. The electromagnetic fields are the thing that is covering the qubit against outcoming effects. The qubit could be an electron that rides with the laser rays in those nanotubes. So that thing makes it possible to create a system that connects quantum computers by using qubit-based connections. 

The quantum network can be a series of nanotubes. There might be a laser ray and a powerful electromagnetic field around those tubes. The purpose of those things is to minimize the outcoming errors that are affecting the nanotube. There would be an absolute gas vacuum in that tube. And that makes qubits possible to travel through that tube. '

Because the quantum computer sends photons through the vacuum. They are reaching sensors faster than photons that travel in the medium. The other way is to make the laser ray and the photon would ride in the tube in the fully controlled electromagnetic environment. 


https://www.eejournal.com/article/ibm-unveils-127-qubit-quantum-computer/


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


Image 1:) https://www.eejournal.com/article/ibm-unveils-127-qubit-quantum-computer/


Image 2:) https://en.wikipedia.org/wiki/Ivy_Mike


https://thoughtsaboutsuperpositions.blogspot.com/

Saturday, October 30, 2021

Quantum physicists are teleported "qutrits" for the first time.



Image I


Qutrits are giving superpowers for a quantum system.

Qutrits are giving superpowers for a quantum system. In the most conventional case, the data is transported in the form of qutrit. But if the computer or quantum computer starts to use a ternary system that makes them even faster than they are. The ternary system allows making the virtual layers inside every state of the qubit.

Qutrit or quantum trit is the cubit equivalent of a triangular number system, the ternary system. A trit is the bit equivalent in a ternary system. And that means if the quantum computer uses qutrits their power will increase. 


X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X


The qutrit(1) can give extreme power to quantum computers. 

The qutrit means that the quantum computer uses the ternary numeric system in each layer(2). That will give the quantum computer extreme power in data handling. 

Normal quantum computers use qubits where the data is packed in many layers. The idea is that the system transmits data by using many layers at the same time. But each layer is using a binary system. 

This means that a qubit-based quantum computer is only the group of binary computers that are cutting their mission in the pieces. And share it with many machines. 

But if the system uses qutrits each layer of the quantum system uses the qutrits the system uses a ternary system. And the ternary system allows making the system that uses virtual qubits. 

A binary system means that a number comes after one. So in the natural binary system used numbers are 1 and 10.  Natural ternary system the system uses numbers 1,2, and 10. In numeric systems, the number ten is the changer.

In a computer, binary numeric system markings are 0 and 1. 

Zero means the gate is closed. 

Number 1 means that electricity or data is traveling in the system. That means the system has two states: on and off. 

In computers, ternary system markings are (0,1,2). The ternary system will make computing faster. The third number allows using so-called stop-bit. In that version, the ternary system uses number 2 as the separator between data lines. 

But there is a more powerful method in the ternary computing system. And that is that the system will send the data to the upper layer or share it with internal qubits in the layer. In that kind of system, the qutrit is acting as the virtual qubit in each layer of the quantum computer. 

In the computer ternary numeric system, the system uses three numbers (0,1,2). That thing makes it possible to use the third determinator in programming. In a binary system, the gate is open or it is closed.  

Or the router can be in two positions and select route one or route two. The ternary system allows that the router can route data by using three routes. Or the gate can also transfer data to the upper level. 

That means when the state of the ternary system gets 0 or 1. The system acts like a normal computer. But if the value is three the system sends the data to the upper level. 


X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-X-






Diagrams of the ternary system: (https://en.wikipedia.org/wiki/Ternary_numeral_system)


The idea is that there are qubits or qutrits in two chambers. Then the oscillation of those qubits would synchronize by using those bottles or chambers. The idea is that those qutrits or qubits are made in quantum fog inside those chambers. 

Long-term data transmission through the air between two quantum systems is needed radio transmitter. As an example, the five-layer qubit requires five radio frequencies. The system will send data for each layer of a qubit by using those frequencies at the same time. And each qubit layer has its own radiofrequency.

There is the possibility to transmit data through the air in long distances between quantum computers by using radio waves quite easily. In that system every, layer of the qubit has its radiofrequency. So in the five-layer qubit, the system uses five radio frequencies for transmitting the data between qubits. 

The data will send through the air by using radio transmitters. And then the receiving part will drive that data to the qubit. The skyrmions might be suitable for driving the data in the qubit. 

Then that annealing will transfer to the chamber and send to another chamber. If those chambers are identical the oscillation will transfer to the quantum fog. In another version, the qubits will superposition through the air from the first chamber to another. 

The difference between the second and the first case is in the direction where the oscillation comes. In the first case, the energy for annealing the particles will mean that the reaction in chamber 1. Which is transmitting chamber will get the oscillation frequency from inside out. 

And the second chamber that is receiving chamber will send the oscillation wave movement from the outside to inside. And in the second version, the superposition will create straight between the quantum fog inside chambers. That chamber is needed for driving data to the radio transmitters. 


https://phys.org/news/2019-08-complex-quantum-teleportation.html


https://www.thespaceacademy.org/2021/10/quantum-physicists-have-teleported.html?m=1



(1)https://en.wikipedia.org/wiki/Qutrit


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


Image I:https://www.sciencenews.org/article/quantum-physicists-teleported-qutrits-first-time


https://thoughtandmachines.blogspot.com/

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