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

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/

Tuesday, January 4, 2022

Let's go back to entangled tardigrades. And Captain James T. Kirk and his material transportation.

 Let's go back to entangled tardigrades. And Captain James T. Kirk and his material transportation. 



How to teleport people to another planet safely? One version would be that the promising star would send the chamber in which atoms are quantum entangled and superpositioned. In the simplest version, the chamber just releases robots. That transfer data by using light-year-long superpositioned and entangled particles. 

Because superpositioned and entangled particles are like an extremely long sticks. That thing makes it possible to round the cosmic speed limit. When another particle moves the other will move too. But biotechnology can also be used in that thing. 

Then that chamber would make clones of the people and then those clones would start to communicate with their creators. This is one version of long-term teleportation. But maybe someday we could teleport even humans. But the first teleported organisms could be tardigrades. 

Tardigrades might be the first teleported organisms. Making quantum entangled tardigrades might not be so fantastic as some futuristic Captain James T. Kirk from the fictional Star Trek series. Where the starship Enterprise travels around the universe faster than light. 

And in that series, Captain Kirk uses the material teleportation every day. The question is can we someday make the real teleportation system that will make the fiction of Star Trek true. There is biotechnology and other possibilities to make the superposition of the space crew in our futuristic mission. 

There is three possible way to make teleportation. The robots are offering the possibility of virtual teleportation. That thing makes it possible to create the VR-reality connection between the robot and human operators. 


1) The crew might use zombie bodies. The robots that landed on the planets and then those crew members can simply use them by using virtual reality. Or the crew might have the ability to communicate with external bodies by using the EEG-based remote control. 

In that case, our spaceship would have two parts. The first comes the robot deliverer. And then the hypothetical manned spacecraft will follow that robot carrier. In that case, the system can be called virtual teleportation and this technology is already in use.

Those robots can be made of steel or carbon fiber. Or they can be biorobots. The biorobot is the genetically engineered body that is controlled by using microchips. That is implanted in its nervous system. That kind of robot can operate on the planet. And the crew would be safe. The crew can communicate with landed robots and use them as remote-control tools.  

There is the possibility that there are bio chambers in our futuristic spacecraft where are always clones of the crew members. When the first person dies. The memories of that person would copy to that clone. 


2) Ion-based teleportation. The ion ray would send to the chamber where they will re-order. In that system, the person would be turned to ions and then that system sends the ions to the chamber that is equipped with an invisibility cloak. 

There the highly advanced, futuristic system puts ions in the same order. Where they were when the hypothetical craft sent them to that chamber. This type of system is interesting. And it might be true in the future. 


3) The quantum entanglement or superposition-based systems. Those systems are making quantum entanglement by using atoms of the body. And that means the person would be in two places at one time. 

But there is the possibility to make this kind of quantum entanglement by benefiting the organisms on the planet. The quantum entanglement can make straight to the nervous system. Or it can create by using a technical device. The quadcopters can install the small-size microchip to the organisms that are delivered to the planet. And then those organisms can transmit data from the surface.


https://bigthink.com/hard-science/human-teleportation/


https://www.iflscience.com/physics/tardigrade-might-be-first-animal-to-be-quantum-entangled-and-live/

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


Image: https://bigthink.com/hard-science/human-teleportation/


https://thoughtsaboutsuperpositions.blogspot.com/


Thursday, December 30, 2021

Even the speed of the best systems has limits.

  

 Even the speed of the best systems has limits. 



The resources of quantum computers and human brains are enormous. But even the best system has limits. What is the limit of the speed of a quantum computer? Nobody yet knows what the abilities of quantum systems are. But the thing is that the abilities of the quantum systems have limits. 

Even the fastest systems have limits. And the speed of the system is not limitless. The thing that the quantum systems can reverse time has brought an idea to the mind of researchers or at least myself that maybe someday. Quantum computers can create a solution and then send them to the past. But today that reversal of time is extremely short. And that means we should wait for practical solutions for a while. 

If the quantum computer can operate through time. That means that it can increase its limit. That means that the new state of quantum computers could be the qubits where the time dilation is extreme. And that thing opens the new visions for quantum computing. 

Same way like our brains has limits. We might think that quantum computers can handle many kinds of problems. But somehow we are wrong. Without knowledge our brains are helpless. Knowledge is the data that the brains are using for creating simulations. That is called "imagination". 

The thing is that the quantum computer's power would increase faster than nobody knows. But the thing is that quantum computers would not reach the power of human brains very soon. The quantum computer might have 1000 states in the qubit. 

That means that the system can make 1000 operands at the same time. But then we must realize that human brains have 200 billion neurons with many more connections. 

So the number of the quantum states in human brains is a minimum of 200 billion if there is only one connection between neurons. That means the brain can cut data to 200 billion parts that the brain can process that data. So the stress of one neuron is quite low. The neurons are the resources of the human brain. And even if there are billions of neurons. There are limited resources in human brains. 

But how do the brains create imagination? The ability to think abstraction is the key to planning things. The thing is that the brains are making simulations. The dreams or virtual events and then they would start to make the changes to those simulations. That thing means the ability to think abstraction. And this ability is also called imagination. Thinking abstraction is the thing that makes human brains superior.  


The abstraction makes it possible that the person can make solutions without seeing things. The reason why holy men were in the caves is simple. They were safe in there. 


The same way the monks were in their chambers and the people who wanted answers just send the paper to them. When the people who are thinking about the solutions. Are safe. And some other people bring food to them. They must not stop the process. When regular people are thinking something. 

They need to turn those resources into other things when they are not in a controlled environment. When the person would go out. The resources that are used for abstraction should release to handle things like data that senses are transmitting to brains. If those resources are not released. The person can walk straight under the car if the brain resources are handling abstractions. But that means that the data that is not stored in long-term memory is lost. 

There are always breaks while the person travels to get something to eat. And on those trips, there is always something else to think about. Those people must stop thinking. But when the person is safe and there is nothing else to do than answer some questions. Those people would be more effective data handlers than somebody who is walking on the streets. 

If the human brains have only one thing to do they would be more effective in that case than brains that are making many things. In the cases, that person should visit shops and other kinds of places. There are needed connections of the brains. The thing is that those connections can do only one thing at a time. 

And that thing means. That the person must release the neurons for everyday jobs. That causes that person can forget solutions. This is the reason why the thinker must live a so-called boring life. Same way if the quantum computer will suddenly need some other thing. It loses all the data collected from the simulations. 

The base data is existing. But data processed through simulations is lost. When we are thinking of the loops. Where the computer surrounds data and there is no answer. The thing is that the supervisors would not know how long making the solution takes? 

The supervisors can stop that loop anytime when the system's resources are needed for some other purpose. But the fact is that operator cannot know would computer get the solution if the data would travel only one time in the loop. This thing means that the solution can be after one second. Or it can be after 1000 years. 


https://www.independent.co.uk/life-style/gadgets-and-tech/news/time-reverse-quantum-computer-science-study-moscow-a8820516.html


https://phys.org/news/2019-03-physicists-reverse-quantum.html


https://thoughtsaboutsuperpositions.blogspot.com/

Saturday, December 25, 2021

The speed limit for quantum computers

   

 The speed limit for quantum computers




An artistic illustration of a matter-wave rolling down a steep potential hill. Credit: Enrique SahagĂșn – Scixel (ScitechDaily/Quantum Marbles in a Bowl of Light – The Speed Limit for Quantum Computations)


The minimum time that the quantum gate needs to react is the time that is the absolute limit for quantum computers. The quantum gate is the gate that cuts the data line, and the speed of that gate is the thing that determines the maximum speed of quantum computers. 

The fact is that all people who worked with quantum technology know that there are speed limits even for quantum computers. The speed of light is not the problem because long-distance superposition and entanglement between particles can surround the cosmic speed limit. But if we want that the superpositioned and entangled particles would bring visible or meaningful benefit for quantum systems. 

The distance between the systems must be enormous. The thing is that superpositioned and entangled particles are acting as quantum sticks. When another side of quantum entanglement is moving also other side is moving. But that thing doesn't remove the need for a quantum gate. 

So it separates the data packages and sends them to the right addresses. But the thing is that the quantum gate (quantum logic gate)  is more complicated than the gate (logic gate). 

The speed of that gate is enormous. But always when there is something that has mass. The speed has limits. One of the solutions for increasing the speed of that gate could benefit things like some atoms. The system can pump energy to the atom. And that thing can cause that the size of an atom can change. 

That thing can cut the photonic interaction. The other version is to use hydrogen atoms, and then the electromagnetic stress will cause changes to the trajectories of electrons. That thing can let the energy travel through protons and electrons. 

The error correlation is the problem with quantum computers. The error correction is the thing that is necessary for making a practical quantum system. The answer is to use two quantum systems that are getting the same data. The splitting photons can make sure. The data that is sent to two quantum systems is identical. 

And if there is some kind of difference between the answers. There is some kind of anomaly in the system. If the answers are also identical. The answer should be correct. And when the number of data handling lines increases. The possibility to find errors is also increasing. That increases the trust and accuracy of the quantum systems. 


https://scitechdaily.com/important-milestone-reached-in-quantum-computing-with-error-correction/


https://scitechdaily.com/quantum-marbles-in-a-bowl-of-light-the-speed-limit-for-quantum-computations/


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


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


Image: https://scitechdaily.com/quantum-marbles-in-a-bowl-of-light-the-speed-limit-for-quantum-computations/


https://thoughtsaboutsuperpositions.blogspot.com/

Wednesday, November 3, 2021

The ultra-broadband record with the entangled photons




The ultra-broadband record with entangled photons would also revolutionize data transmission. As many times before quantum technology makes it possible to create ultra-fast and ultra-secure data transmission systems. As you see in the image above text in this system the entangled photons are traveling sideways. And that makes it impossible to steal data from the system. 

In that system, there is possible to use two types of qubits. The qubits transmit data. And also control qubits. The control qubit means that both sides of the entangled photons are transmitting the same data package. That qubit is used to uncover if there are problems in the system. So in this kind of quantum system will travel by turns data transmitter and control qubits. 

The thing that makes the data transmission safe is that the control qubits or points the data can transmit precisely the same time to two sensors by using entangled photons. That means if there is some kind of difference in arriving time or another side of entangled photons would be missing. that tells there is something that has affected the system. 

There is introduced an idea to use the line of light or optic cables. For creating the room temperature operating quantum computer. The laser rays that are traveling in optic fiber would stress with other lasers. And the level of the brightness of the laser ray would be a certain state of the qubit. 

Sometimes is introduced an idea to create quantum computers that can operate at room temperature by using light- or optic fibers. In this version of the quantum computer, the optic fiber or even regular flat cable can turn data to travel in lines. The system uses similar technology to the internet. 

The key element in this system is the mass memories that are at the end of the wire. The data would be driven to the stand-by position in rows. Then a sliding window will read that data. And transfer it to the mass memory. And then those mass memories would start to travel in cable in the linear form. 

That kind of system can increase the power of binary computers. It shares the data in bites to the layers of the microprocessors. Or to the group of the microchips. And then data is connected behind those microchips. That's the new way to use regular microprocessors. 

So in this system, the flat (or optic) cable is forming the qubit. Data travels in every wire by using binary mode. And that kind of system would be a medium between the quantum computer and binary system. The system is the line of binary computers that are working at the same time and operate with different data bites at the same time. 


https://scitechdaily.com/quantum-physicists-set-ultrabroadband-record-with-entangled-photons/


Image:https://scitechdaily.com/quantum-physicists-set-ultrabroadband-record-with-entangled-photons/

Computer researchers published a new algorithm that revolutionizes web management.

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