Showing posts with label Quantum computer. Show all posts
Showing posts with label Quantum computer. Show all posts

Tuesday, March 11, 2025

The LLM-style operating systems can make quantum computers more scalable.



New types of advances in quantum computer technology make those systems more scalable than ever before. The new operating systems can use the Large language model, LLM style portal that offers a better interface between binary computers and the quantum system. The LLM is always similar. It allows to use of multiple things to give commands to the system. The LLM can operate between humans or it can also operate in an interface between computers. The LLM can also make binary computers, and quantum computers understand each other better. 

The large language model, LLM is only one version of the command languages. Written for computers. In traditional programming and command languages like DOS language, C, C++, etc. the command syntax happens through certain formulas. The user must give those commands precisely the right way. The LLM gives freedom to the operators. The LLM allows to use of spoken language to give commands. The language model searches keywords from text. 

Then it translates those things to commands, that the sub-application requires. Those sub-applications can be the internet browser or some programming editors. 

The idea for those LLMs is taken from the Internet search field. It is much easier to write search words and go to the homepage. Clicking the link then write long addresses into the address bar. 

When a user gives the order to the computer. Using spoken language. The system transports data to a speech-to-text application and then it can transfer that data to the LLM user interface. That is the thing that makes the LLM so effective. The LLM translates those commands for the modules that search data from the networks. 

The new quantum computers that run the large language models, LLMs, can quite soon make the doctoral thesis. The system can search data from multiple sources and then fix the text into the form required for a doctoral thesis. 

Those LLMs require lots of data and complicated algorithms. Those things require lots of calculation power. The LLM and the quantum computers are the ultimate duo. Because quantum computers have that kind of calculation power. 

That is one thing that makes quantum computers more powerful than other systems. 

And the only thing that can beat quantum computers is the quantum neural network. Which is the network of quantum computers. That means quantum computers make old-fashioned data security useless. 

But otherwise thinking. That system can protect data more effectively than binary computers. There are multiple levels of data security. The system that runs complicated algorithms can confirm the computer that the person uses. 

But it can also recognize the user. And AI can see if there are other suspectingly acting persons. In the same space. Those things make AI an ultimate tool for data security. The AI can make a profile. If the writer is always the same person. And when the style is always different that makes suspicion that there are multiple makers in documents. 


Sunday, October 17, 2021

How to program a quantum computer?



The problem with programming the quantum computer is simple. Where the computer finds the data must determine to a quantum system. 

The building can use as the model for data input for the quantum computer. The binary computer has only one floor for handling data. And the quantum system has many floors which are symbolizing layers or states of the qubit. And the problem with the data handling process is how the quantum system is how the system knows the position of the inputted data? 

If we are using the physical house as an example we can think that the binary computer has only one door where it can find data. But the quantum computer has many layers. So how the quantum computer knows where is data is inputted into it? 

The binary computer can use as a lobby. The binary computer is inputting data to the quantum system. So data will not go straight to the quantum computer. Binary computers must preprocess data before it will send to the quantum system. And the quantum system must be prepared to receive data. 

When the quantum computer has finished the data processing. Data flow will send back to the binary system for output devices. If the input-output lines are separated. And each line is handling only input or output processes that mean the system will work faster. 

Programming the quantum computer is not so tricky as people think. But making the theory to practical mode is tricky. When data is traveling through the binary computer to the quantum computer the binary computer has one problem. It has only one layer or floor that it can use in the data handling process. The quantum computer has multiple floors which are the states or layers of the qubit. 


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The standing qubit is like the house.

If we think that the house is the model of the quantum computer. Each of its floors is in a certain state. The state of the qubit is a certain energy level. And the quantum computer must use very high accuracy in the energy loads that it can find the data from each layer. So this thing means that the energy-based qubit is a "standing qubit". 

Rising and laying the energy level of the qubit is allowed to pump data in it. When the data is pumped into a quantum system. it stored at a certain energy level. And when data will remove from the qubit. The qubit releases it in the form of photons or electromagnetic wave movement and the system sends it to the sensor.  

But what is a recumbent qubit?

Recumbent qubit is similar to the standing qubit. But it uses electromagnetic wavelength for transmitting data. In that system, every frequency of electromagnetic spectrum is the independent state of the qubit. 

This kind of system is the prism. And the laser rays are transmitting data to each spectrum line. That spectrum- or rainbow qubit is one of the versions of the quantum computers that can operate at room temperature. 

The system uses each spectrum line as the layer of the qubit. Because data transmission happens by electromagnetic wave movement. And each color of the spectrum is one layer or state of qubit this thing can be called a "recumbent" or "horizontal qubit".


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The data input for the quantum system happens through the receiving layer. 

The information what quantum computer requires for handling data. Is how many layers of the qubit the system requires. How many layers of the qubit must be reserved. 

And which of the layers are in use. The last information is necessary if the inputted data doesn't fill the entire qubit. So when the data is coming the binary system tells a quantum computer that the data is coming. 

Then the quantum computer will send the layer to get that data. And then the quantum system will share data to the needed layers. The router is like the elevator in the building. 


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The difference between binary and quantum computers is that there are many layers in a quantum system. The binary system has only one layer which it can use. 


The speed of binary computers cannot rise forever. There is the possibility to make the binary system faster by using artificial intelligence-based solutions. One of the solutions is that the computer tells automatically when it stops. Then the inputting system can deliver data to the system. But the fact is that theoretically, the speed of the quantum computer has no limits. 

The number of layers or the states of a qubit is limited. If the system uses the quantum annealing chambers for handling data. The number of those chambers can increase without limits. The data can be driven to those chambers in lines. So the entirety of the quantum computer system can consist theoretically unlimited number of subsystems. 

When data is traveling to a quantum system the binary computer is telling that the data is coming. Then the one layer or the state of the quantum computer will come to get the data. So that layer is called "the port state". And in that layer, the quantum computer gets the required information for handling the data.  

The data that the quantum system requires is how many layers it must reserve for the data handling. That thing is important if the handled data row is short. In the cases like Riemann's conjecture, the mission doesn't fill the entire qubit.  If the algorithm is very short it leaves empty layers in the qubit. 

The free layers are causing a problem. If there is no data the quantum computer might stay to wait that the empty layer leaves its data. And that can cause the jam of the system. The layer must tell the collector that it's empty. The idea is similar when the data collector would be a human who drives with an elevator. 

The system works that the layer will deliver data to the collector at the door of the elevator. But if there is nobody the serviceman would wait until somebody is coming. The solution for the empty state problem is that there is a mark that the layer or floor is empty and the collector can pass it. 


https://thoughtandmachines.blogspot.com/

Tuesday, October 5, 2021

The quantum computer can be more than the sum of its parts.




The thing that people normally do not mention. Is that the data that travels through the computer is not depending on the computer itself. Physical computers or hardware are always separated from the "mental" (code-based) or non-material data. 

So the power of quantum computers is a similar thing with regular or binary computers. The hardware and the programs are separated things but they must also operate as a united thing. The thing is why the data is separated from the hardware. The code-based data can multiply as many time as the user want. 

Is that the user can download the same data to many physical machines. So for the result of the data handling the equipment of the data handler is meanless. But the type of the data handling equipment has meant in the time that the operation takes. The quantum system is making the same things that binary computers are doing. But the speed of quantum computers is much, much higher. 

The cooperation between software, operating system, and hardware determine the power of the quantum computer. As well as it determines the power of the regular computer. If the input channel of the data is slow that makes the system slow. The system is entirety but all its parts can be separated into pieces. 

The thing is that the things how the operating system and the production program are working together. How they are handling memory and the speed of the data input in determining the speed of the machine. Until the quantum computers are getting their operating system and keyboard or some other input tool. The data will be driven to the quantum system and back by using binary computers. That means the speed of the binary computer is the bottleneck for the quantum system. 


When the data is used for some productive work it is handled. And handling data means that data cannot take its original form spontaneously.


When the data is traveling through Turing machine. Its form is changing.  While Turing machine handles data it would change it. So when the data is traveling through Turing machine. It will not take its original form again because computing is chacing the entirety of the data. Turing machine doesn't create information from emptiness. 

It collects it from multiple sources and processing the data flow means that Turing machine is putting the pieces of the information together to one entirety. The data can return to its original form. If the data segments are marked as the code what would help to track the source of each data segment. But spontaneously the data that traveled through Turing  machine is not returning its original form. 

 


https://scitechdaily.com/experiments-show-quantum-computers-can-be-better-than-the-sum-of-their-parts/


https://scitechdaily.com/quantum-leap-challenge-uc-berkeley-to-lead-25-million-quantum-computing-center/


Image:()https://scitechdaily.com/quantum-leap-challenge-uc-berkeley-to-lead-25-million-quantum-computing-center/


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


Image:()https://scitechdaily.com/quantum-leap-challenge-uc-berkeley-to-lead-25-million-quantum-computing-center/


https://visionsoftheaiandfuture.blogspot.com/

Monday, September 30, 2019

The quantum teleportation and its possibilities outside the quantum computer

The quantum teleportation and its possibilities outside the quantum computer

What would you do with a quantum teleportation machine, what will load particles with energy, what makes time slowing?  This hypothetical opportunity to stop time would give many futuristic visions in front of our eyes. Have you seen a movie named "Hitman" or seen some movies of that series? One of the key elements in those movies is the chancing the clothes less than a second. If we think the possibility to do that thing in real life, that thing might seem fictional.

We could ever do that thing in real life. But if we would have the ability to create the man-sized version of quantum teleportation, we could do that thing very easily. And there would be many many things more, what we could do if we would have the ability to create the quantum teleportation system, what can create the phenomenon, what is our size.

The thing, how the quantum teleportation system works is quite simple, as I have written many times before, and that thing is that the object would load with high power electricity. The electricity would create the phenomenon, where the time is slowing in and on the particle. This ability would make possible to store data very effectively. And in theoretical qubits, the data is stored in molecules, which will be used to transport it.

The transportation molecule, what will transport data inside the quantum computer would be the clumsy answer to the problem, how we could create the bit, what has three or more values. But also there has been plans or rather saying theories, that some kind of crystals can be loaded with electricity, and then they would shoot to target, what will dissemble that electricity, what is stored in the superconducting crystal.

This kind of solutions are created for simulating qubits, but they would offer a very interesting method to secure some data in space. In this case, the crystal, where the data is stored in superconducting temperature would send to satellite, what wanted to program, and in this scenario, the electromagnetic radiation would slow the time in crystal, what makes possible to store data more effectively.

So this thing would be the high-tech version of bottle post. And of course, as I have written before the Carl Sagan book "Contact" introduces spacecraft, what actions bases the quantum teleportation. But when we are playing with the idea, that quantum teleportation would someday be possible to create in the large scale, we might have the opportunity to create aircraft where the time slows inside it.

If we can create a jet fighter, what would have the quantum teleportation system, the pilot would have more time to aim weapons. And if secret agents might have this kind of futuristic system in their hands, they can stop time, and then just walk inside places like an enemy command center, photograph each screen and documents. After that our imaginational agent would return to the hotel, and nobody ever sees a thing.

Wednesday, August 28, 2019

Could water molecule act as qubit?

Could water molecule act as qubit?

Sometimes I have thought that is it possible that the "Y"-shaped nanotechnical molecule can be replaced by using simply the water molecule. The thing is that water molecule, what is hovering in the magnet field would be loaded with electricity, and then if the molecule comes to the detector or the gate the one hydrogen atom ahead would the value of qubit be 0. And if the water molecule comes to the gate by touching it with two hydrogen atoms the value would be 1 and if the oxygen atom would come to the gate at first, the value of qubit would be 2.

This is an interesting idea because the creation of qubit is extremely difficult. If we would think about the ionization of water molecule and the layer, what touches the gate, the idea is that if the molecule has the polaric quality, it would also transfer the data. And the polarity and the level of electricity what would be detected in the gate would mean the value of qubit.

This kind of things are interesting to think, and that thing is extremely important to understand because if we could create a simple and stable molecule, what will store high level of voltage, we might be closer to create the quantum computers than ever before. Big atom in the middle of molecule operates great insulator, and that's why Xenon would be suitable in that kind of purposes.

When we are thinking about the molecular qubits, things like combinations or molecules, where one member would be noble gas Xenon would that molecule or atoms what are around the center atom, what would be Xenon voltage increase higher level than using the smaller atom. In this case, the noble gas would act as the insulator and denies that the atoms, what are around xenon erupt their capacity. The high-level voltage would make easier to detect those molecules, but the problem is that noble gases are hard to make molecules.

This kind of research makes possible to create qubits and quantum computers someday. And the thing is that the role of the pathfinder in this kind of cases is not easy. The molecular qubit is the very clumsy answer to the problem of the qubits. There is introduced an idea to use Helium atoms as the qubits, but bein successful means that the electron core of that atom must somehow be modified. The location of the electrons must be an absolute right when this qubit would travel across the gate. If just one electron touches the gate the value would be 0. If two electrons are touching the gate the value would be 1, and if the nucleus touches the gate, the value would be 2.

The problem with transferring the data in as qubits is to detect the empty. If we think the sensor, what operates as qubit detector would look like a gate, and the qubit as an atom, ion or molecule for working that thing needs that the molecule touches the gate in the right way.  And giving absolute right voltage, must the electrons be in the right position that the value would be, what it wanted to be. And detecting the 0 would be difficult. One answer would be that the atom would travel across the laser ray, what would detect that case, and that would be number zero.

In this case, if the atom or ion touches the gate, the value would be 1 or 2. And if the touch would not be noticed before cutting the laser ray, the thing would send the value 0. Another version of virtual qubit would be three laser rays, and the ion would travel across them. If one laser ray detects the atom the value would be 0 if two laser rays have been crossed the value would be 1 and if all three rays have been cut the value will be 2. The thing works that behind each laser ray is the magnet, what turns the ion away its track in a certain position.

The molecular version of qubit would be too large for being effective in high-speed computing. There has been given an idea that the prototypes of quantum computers would be full of the water tubes, and the nanomachines would travel inside them for giving the demonstration, how the qubit should work in the full-scale solutions.

Sunday, July 14, 2019

Quantum computers and qubits

Quantum computers and qubits

The simulation of the quantum computer can be created by sending the program code, what is cut in the certain bites to the multiple processors at the same time.  That means that the code of the computer program would be shared at a certain point, and then those parts of the code would drive at the different processors at the same time.

So here I must repeat the thing, what I just wrote, and the things what I told makes possible to emulate the operand of the quantum computer. That thing would give ideas, how to complete the programming of the quantum computer, where the data goes in lines, not in rows, and this thing makes those computers the most powerful tool for the data handling, what mankind has ever thought were possible.

And the thing in quantum computers is that it operates in the normal temperature. There has been made experiments by using superconducting circumstances, wherein the superconducting wires are hoped to send the electrons in the rows. 

That could be possible to drive the program in multiple processors at the same time and after that, the other processors would collect the results in the one piece. The idea is to simulate the ability of the quantum computer to handle data in lines.

The bit, what is one or zero are replaced in quantum computers by using qubits, what have valued one and zero at the same time. The idea of qubits is simple, it is needed the particle, what has two polar areas. Another is the plus and another is minus and the way, witch side that thing goes makes the value zero or one.

Could neutron operate as the qubits?

So if we would explain, what qubits really are, we can say that this thing is similar to the planet. There find north and south pole in that particle and that thing makes making the quantum computer quite difficult because we cannot make electrons, what have north and south poles.

But sometimes I have thought that could the quantum computers operate by using neutrons. Neutrons are particles, what has north and south poles. And that means that the neutron would fill the demands of the qubits, but it is quite difficult to control.

The thing that some particle must have two values at the same time is a very extraordinary thing, and that is making quantum computers very difficult to create. Of course, there is a possibility to create qubits by using two ions, and the negative ion would mean value zero, and the positive ion would make the value one if it comes to the detector first.

But ions are the complicated and clumsy solution for that thing because information must travel with very high speed in the quantum computer. Ions are larger in size than the electrons, and the excellent solution for the problem of qubits could be the hydrogen gas, but the problem is that the electron is orbiting the proton. But if the position of the electron at the core of hydrogen can be stabilized hydrogen can fit as the qubits, but the problem is, how to stop the electron?

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


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