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

Sunday, August 21, 2022

Some people think that quantum computing can be a bigger thing than the invention of fire.



New machines like autonomous nanorobots are the next generation thing in technology. The miniaturized technology requires new tools. And one of those tools is enzymes that are controlling chemical reactions very carefully. Tools that turn enzymes by using a combination of lasers, microwaves, and chemical mixtures require very effective computers. And quantum computers are the tool that makes nanotechnology more powerful than ever before. 

Quantum computers are the tools that are revolutionizing astronomy and other sciences. They can read the DNA molecules and compile that information for finding similarities in the DNA sequences. In that process, the system can use scanning tunneling microscopes or spectrometers that are connected with laser microscopes. 

Quantum computers that are connected with the nanorobots can make a copy of any DNA in the world. Those systems can control huge entireties. And they can solve even energy problems of the Earth. Quantum computers are the tools that can calculate the optimal use of fuel for each moment and change the power production and the use of things like street lights. 

Have you imagined what kind of energy-saving intelligent streetlights is in use only when somebody walks on the streets? That kind of system bases the same idea on automatic lights in stairwells. 


The speed of the R&D process in quantum computing is extremely fast. R&D teams are using quantum computers for researching new quantum systems. 


What if the streetlights will turn on only at the point where the person walks? That thing will highlight that point and make the person even more visible. 

What kind of energy saving will get if every car has individual route orders? In that case, the artificial intelligence will handle traffic in its entirety, where the autopilots of the cars fix their speed so that the standing time at traffic lights and crossroads is minimum. Minimizing the driving time and making the route that will spend electricity and decrease carbon emissions. 

If some people would stay home at remote work in some days in the week. That thing can also decrease carbon emissions. But the large entireties require large-scale intelligent systems. The data security must be fully confirmed because hackers can cause very big problems with that kind of system. Quantum security cannot be broken by using regular binary computers. 


https://investorplace.com/hypergrowthinvesting/2022/08/quantum-computing-could-solve-the-worlds-energy-crisis/

Tuesday, October 26, 2021

Emulating the human way to think is very difficult. But maybe someday, quantum computers will become more intelligent than humans.



When we think what is the thought about the human way to think. We must remember that making the spontaneously learning computer. It can be made by using a quantum computer. The learning process of the living organism is just connecting the action with the observation. And that thing makes spontaneously learning artificial intelligence harder to make as it should be. In real life, all that we see and feel are causing experience. 

So theoretically, the learning machine must only record everything that it sees. But the problem is how to select things that are important for the individual? If the system records everything that means the databases are growing to enormous size. And that thing makes it hard to control data masses that are stored in the system.

 Even the largest databases have limits. And in the case of artificial intelligence, the databases should be as small as possible. The system makes the network of those databases. So sometimes people are asking why there are so many neurons in our brains. The reason for that is that a large number of neurons are making sure that if one neuron is damaged that minimizes the damage. 

So if we want to simplify that thing. We can make a copy of human brains by using 300 billion databases. And then we must realize that there are no binary computers that can handle that kind of number of databases. But for the quantum computer and especially quantum annealing computers that are forming of the cloud of quantum particles. The capacity of those quantum computers that are using quantum fog as the group of qubits has no limits. 

In those hypothetical computers, the quantum particles like Bose-Einstein condensate, extremely cold fullerene, or neutrons are acting as the neurons in human brains. And the extremely precisely calculated and controlled laser rays are acting as the axons. 

By using the quantum brains there is the possibility to handle that kind of extreme entirety. In quantum brains, the quantum fog is used as the role of the neurons. The extremely cold Bose-Einstein condensate can be used in this kind of role. And the high-accurate laser rays can be used as axons. 

The vibration of the quantum fields around the condensate would play the role of a membrane of the neurons. One of the most interesting versions of quantum fog is the neutron cloud. The neutrons can anchor in stable positions and the extremely small laser rays can make the quantum brains possible. The fullerene molecules can also be used for that purpose. And if that thing is also equipped with the small superconducting mass memories that system can form the most powerful data-handling unit in the universe. 

The size of that kind of system is no limit. And some futurologists are thinking that there could be giant Dyson's spheres somewhere in the universe that can handle the quantum clouds computers that are the size of planetary systems. That kind of system might have the capacity that we cannot ever even imagine. 


https://scitechdaily.com/developing-artificial-intelligence-that-thinks-like-humans/


https://visionsofbrightfuture.blogspot.com/

Sunday, October 24, 2021

About the history of computers. From binary- to quantum systems.

 


I'm just looking at my new Windows 11 update. And that thing brings interesting ideas to my mind. The research and development of quantum computers are faster than ever before. Even today we can use quantum computers by using remote connections. 

But the fast-advancing tools in that sector cause that will be the time when quantum computers are for sale in supermarkets. The development and advancement of quantum computers are following the route of binary computers. The binary computers came out from laboratories. And then they became personal equipment. 

The rise of the internet caused that the information stored in the network stations and the thing called PHP (Preprocessed Hypertext) made it possible that also small computers can use to drive complicated code. The PHP means that the system outsources complicated calculations in the calculation center. And the PHP would be the base for the systems that are used to operate quantum computers. 

If the quantum computer is installed in some calculation center. That means there is one more level in those supercomputers. The data is downloaded from the net to the binary supercomputers that are preprocessed to the quantum system. 

And the same way when quantum computers process data and finish its run it would download and turn to the binary mode by using those supercomputers. The advancing hardware means that quantum computers are turning smaller and cheaper. 


2D microchips can be stabilized by using pressure and low temperature at the same time. 


The 2D microchips are more suitable for small-size quantum devices than regular 3D structures. The reason for that is that stabilization of the 2D or flat structures is easier than 3D structures. The system can use both low temperature and pressure for stabilizing the quantum systems. 

That allows the quantum system to operate in higher temperatures than old-fashion quantum systems. The compact-size quantum computers can be the next step for computing. 

And when quantum computers are turning compact and more often. That thing means that the data that is protected by using binary computers is dangered. Even we want to resist the advancing of quantum technology we must remember the development of binary computers. 

From the first electronic computer, ENIAC was only a small step to personal digital computers. The ENIAC step into service in 1945. And the IBM PC, the first personal computer entered to markets in 1981. And if we are looking at the advancing of the computers we must realize that if somebody said that we have a 4 gt memory block in a computer that we can carry in briefcase other people said that the sayer has some problems. 

Quantum computers are advancing very high speed. And quantum computers are used to plan and research new and more powerful quantum systems. The size of quantum computers decreases. And that means the first robots that are controlled by the internal quantum computers might be a door. There is nobody who can control the development of that thing. 

https://thoughtandmachines.blogspot.com/

Monday, October 18, 2021

Electrons are acting like tsunamis in the superconducting wires.



The researchers of the University of Tampere have discovered the new thing in the superconducting world. Electrons are traveling in the superconducting cable like tsunami waves. And that thing can bring new visions in the world of quantum physics and quantum mechanics. 

When electron swarms are traveling like tsunamis they have a very large capacity to transmit data. And that thing can use to send data to quantum computers. If the electrons are transmitting data to the quantum computers are moving in the form of a fan. Every each electron can shoot to its layer or state at the same time. So that thing can make the electron-tsunamis an interesting tool in computing. 

The electron tsunamis are the thing that can use for modeling the hypothetical wormhole or Einstein-Rose bridge. The slowing of the particles crushes them. Not travel through the energy channel. 

The idea of the wormhole is that the wave movement is traveling in the energy channel in one direction. That means that the time is slowing in the wormhole. So the electron tsunami has caused an idea that the information will be crushed when it comes out from the wormhole. The idea is easy to explain when we are using tsunamis as an example. 

If we are riding with tsunami at the open sea that thing is not dangerous. The danger is that when the tsunami hits the beach that thing causes the situation when we are flying to the sand. So the thing that causes damages and breaks our bones is the slowing. Riding with electron tsunami in the wormhole is safe until we come out from that thing. 

The quantum fields will crush the information when they are coming out from that energy channel. The thing that is making the wormhole so an effective transportation system, if it exists is that there are no quantum fields. That means nothing will slow the particle in the energy tunnel. When the particle comes out from that energy channel it hits the quantum field of the regular universe. That quantum field slows the particle. And slowing the speed is crushing the information. 

Even if we cannot create a wormhole between two black holes. We can probably make the virtual wormhole in extremely cold conditions. In the virtual wormhole, the wormhole is made by using a laser ray. Then the electron tsunami is launched in it. And the probe will travel in the electron cloud and laser ray to distant objects. But the virtual wormholes can use in quantum computers for protecting the data transportation in quantum computers. 


But maybe someday in the future...


The electron tsunami can put to travel in the laser ray. That is used as the virtual wormhole. But maybe in the future, the large-size laser can be used to create the virtual wormhole for the probes that are using an antimatter engine. The large, nuclear-powered laser can position in the Kuiper belt. 

And then the probe can shoot to the Alpha Centauri inside the laser ray and it can ride by electron tsunami. The Voyager-size probe that has an antimatter rocket could travel long distances in space inside the laser ray. And the electron cloud can put to travel within the laser channel. The idea is that the laser channel or virtual wormhole can protect the data transmission between the probe and its senders. 


https://www.tuni.fi/en/news/electrons-behave-tsunamis-findings-hold-promise-discovery-new-superconductors

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

Image: https://upload.wikimedia.org/wikipedia/commons/5/55/Large_breaking_wave.jpg


https://thoughtandmachines.blogspot.com/



Wednesday, October 6, 2021

The "Tokamak" fusion test reactor can use as the base of the new and very effective quantum computers.



The "Tokamak" fusion test reactor can use as the base of the new and very effective quantum computers. Those are basing the low-energetic particle accelerators. 

The image above The electron-photon interaction while the electron is traveling in the tube. The power of the light quantum is determining the state of the electron-based qubit. 

Along with the internal kinetic energy of an electron, that is another determinator for the state of the qubit. That thing allows creating the new type of qubits that are more powerful than ever before. There was different text in the original image. And you might see it in the link below this part. 


Image:(https://phys.org/news/2021-09-unveils-quantum-nature-interaction-photons.html)


The idea is that the electron or qubits are traveling the circular trajectory. And the system can load data and reuse the electron very fast. That means. When the electron-qubit has traveled through a circuit it releases its data and then takes the new data load. That means it can use smoothly and fast. 

One of the versions of the solution that can release the energy or data from traveling qubits is the graphene net. There are positioned ions or electrons in the middle of those graphene carbon frames. Then the traveling data-carrier qubits hit those particles and the energy level that is released determines the qubits state. 


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The photon-based qubit can be the light-cable that is in a circular position. 


The photon-based qubit can be the light-cable that is in a circular position. In that system, every class fiber is acting as the individual state of the qubit. That system can operate at room temperature. 

And the same thing that is used in the electron-based qubits can use in the photon-based qubits. The photon-based qubit can be the optic cable that is put in the circular position. 

The lasers will pump photons into the structure where they are annealed. And when those photons reach the sensor they release the data. In light cable every each light fiber can form its state of the qubit. And the light cable entirety is acting as the qubit. 


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The "Tokamak" reactor can act as a model for quantum computers that can operate in higher temperatures.


The "Tokamak" reactor can act as a model for quantum computers that can operate in higher temperatures. The idea of the qubits that are basing the circular accelerators is that the energy of those systems can rise so high that the changes of the energy level are easy to notice. Pumping the data to the electrons can happen by using the photons that are loading to the traveling electrons in the particle accelerator. 

The high energetic system would cover the errors from outside radiation by using so high energy load that weak outcoming interactions cannot affect that qubit. In some other ideas, different particles like protons, neutrons, and electrons can use to qubits. In that idea, every each of those particles is the one layer of the qubit. 

And the timing of the release of that energy is the difficult thing. The system can be an opposite version of the free-electron laser. While electrons are traveling in the tube they would stress by using photon emission. And then the system would release that data from the photons by changing its direction where it realizes its data as the light quantum. So this type of accelerator-based quantum computer can recycle those electrons. There is an idea that the transversely set fullerene tube can use to delete the qubit. 

And then they would start the new round in the quantum system. 

The electron-photon quantum interaction can make it possible to create new and easier-to-use quantum computers. What if researchers could use a donut-shaped structure, where electrons are traveling in the circular track for making the more powerful quantum computers. The idea is that the electrons are orbiting in the particle accelerator and that system would load the data to the electrons and remove them. The process in that quantum computer would recycle the electrons. 

While traveling in the particle accelerator that looks like a "Tokamak" fusion reactor the photons will load information to those electrons. The problem is how to adjust the point where the electron releases its data. The ability to make the electrons travel around the particle accelerator and then reload and release the data in and out of those electrons would make the system more powerful than ever before. 

In this system, the adjustment of the energy that is loaded to the quantum system is problematic. If the energy load to qubit is too high or too low the system releases the energy load or data at the wrong moment and point. That thing would cause problems for making the new and more powerful quantum computers. 


https://phys.org/news/2021-09-unveils-quantum-nature-interaction-photons.html


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


https://thoughtandmachines.blogspot.com/


Wednesday, September 29, 2021

The high pressure and miniature technology can make the room-size quantum computer possible.


The quantum computer (left) can install in a similar structure. That is used as the pressure vessel of the nuclear reactor (right). That pressure vessel allows rising the pressure around the quantum computer. And the water of the cooling system can replace by using liquid hydrogen. This thing means. The same systems made for nuclear power can use in quantum computers. 

The problem with room-temperature quantum computers is that the oscillation of atoms or other things in the qubit must stabilize. The oscillation of the qubits is removed. By decreasing the temperature of the system to zero kelvin degrees. And the researchers must protect the system against outcoming radiation that can disturb qubits. 

Researchers can find One of the answers for the structure of quantum computers from the nuclear power plants that are used. The quantum computer will put in the place of the nuclear fuel elements. The same structures which used for protecting the people outside the building. Can use to protect quantum computer inside the building. So the quantum computer can install in the place where the nuclear reactor used to be. 

The same structures which are created for the nuclear power plants can protect the qubit against the outcoming radiation. And the nano-size technology makes it probably someday possible that the quantum computer fits in the one-liter thermos bottle. 

The structure of that quantum computer can be put in the liquid hydrogen that acts as the radiation shield. This thing can give purpose for the nuclear power plants that are not used and which removing is difficult.  There is the possibility that nanotechnology makes it possible to miniaturize the quantum computer. 

The use of atomic-size technology can make it possible to create a quantum computer that fits in the one-liter thermos. And the cooling system that the hydrogen shield and low-temperature systems need is quite big. But the miniaturized quantum computer can fit in the room. 


That system requires a zero-kelvin temperature. And miniature systems are suitable for large-scale industrial use. 


The absolute pure silicon block where is installed iron atoms and the system would stabilize by pressing it with high pressure. Can make it possible to create a quantum annealing computer that can operate at room temperature. 

But can we stabilize the quantum annealing system some other way than just decrease the temperature? The quantum annealing system is the cloud of quantum particles that are stressed by using radiation. There is the possibility that by using the silicon "gel" where is iron atoms are possible to create the quantum crystal that is stable enough. 

The silicon gel is the bite of absolute pure silicon where all other things are removed in the creation process. The iron bites will be put in that silicon bite and then the system will press the silicon bite by using magnetic- or hydraulic systems to the pressure where the oscillation is ending. And then the electromagnetic radiation will target that silicon box. That thing would make it possible to create a high-temperature quantum computer. 


()Images: 

https://spectrum.ieee.org/measuring-progress-in-the-noisy-era-of-quantum-computing#toggle-gdpr


https://www.researchgate.net/figure/Reactor-pressure-vessel-its-internals-and-water-flow-path-in-it-5_fig2_320800540


()https://visionsoftheaiandfuture.blogspot.com/


Tuesday, September 28, 2021

The room-temperature operating table-size quantum computer is coming.




Image I) IBM Quantum system one.


I don't know how effective that kind of system is. Anyway, the fact is that in binary computer systems the personal computers are not ever so powerful as supercomputers. We are not expecting that laptop computers can make the same things as some supercomputers in the supercomputing centers.  

But even low-power quantum computers are more powerful than regular binary computers. And if we are thinking that the power of the work stations rises 1000 times that is a great advance in computing. This type of system can run complicated tools than ever before. And the thing is that all workstations can interconnect together by using the WLAN. 

The weakness of quantum computers is that they are massive systems. Those systems require absolute stable conditions and the temperature in there must be absolute zero point. In quantum systems, researchers must eliminate all oscillation and all effects that can turn electrons out of the track. So there must be some other things to be done for making the quantum system that operates at room temperature. 

Some solutions can make table-size quantum computers real. The power of those systems is not so high as some large-size systems. But maybe in the future, there are two types of quantum computers. 


1) Personal quantum computers that are desktop-size or even smaller.

1B) Portable or mobile quantum computers.

2) Super quantum computers that are in the computer centers. 


The division is the same with binary computers. But in the name computer is included the word "quantum". And there is a possibility that when the quantum computers are turning more common. They are just turning the "computers". Who knows the future?

But then to the solutions that can make the room-temperature operating quantum computer possible. Maybe those systems are not so powerful as in some quantum computers that are in the computer center. But they are more powerful than regular binary computers. 


The lasers and chemical qubits can solve problems of the creation of the more powerful, table size, or portable quantum computers. 


The use of laser rays, regular wires, or viruses can solve the problem to make a portable quantum workstation. Those systems use artificial intelligence for removing overlapping data segments. They are not so powerful as the quantum computers that are used in the calculation centers. But they can make personal and portable computers more powerful and able to drive more complicated code than ever before. 


Image II:


Left: T4 Bacteriophage-virus

Right: Coronavirus


1) Use the lasers or regular electric wires as the qubit. 


The series of the laser rays or the electric wires act as the three or four-layer qubit. There are needed three or four laser rays or electric wires for making the data transportation channel. One of the wires is telling the system if the computer is on or turning off. 

And the other wires are transporting data. The calculation of the layers or states of the qubit always starts from zero (0,1,2,3). And in this system, every single wire or laser ray is the layer of state of the qubit. The data will be driven to the system by using TCP/IP protocol. The data row will drive to the terminal of the qubit. And share to pieces that are moving in lines through the data bridge. 


2) Making the chemical qubit by using a virus.


In those systems, the idea is that the virus in which DNA is destroyed. Acts as the switch. The virus would act as the platform where the nano-technical springs are installed. And especially coronavirus could be acting as the platform for artificial neurons. In those qubits, the data is driven to the switch as the entirety. 

In that process, every data segment has numbers. The virus acts as the switch which transmits data to a terminal where AI removes the overlapping data segments. So in this case, the terminal where data is handling locates after the switch. 


2a) The bacteriophage (Image left) as a qubit


The idea is that the bacteriophage virus is turned into a qubit. On the layer of this virus would put the carbon molecules for making electricity travel. And to the "feet" of the virus would install the magnetite bites. Then, that virus would position in the chamber. 

Every point of its leg is the electric wire. When the wire or the assistant system will connect electricity that will pull the foot of the virus to the wire. And it connects the electric circuit. The number of contacts determines the state of the qubit. In this kind of chemical qubits, the data will transport through the qubit as an entirety. And artificial intelligence eliminates the overlapping parts of the data. 


2b) Use the coronavirus (Image right) as the qubit.


The idea is that the core protein of the virus will replace be using the nanotechnical springs. At the point of those springs is the electric wire that will pull the nano spring to it. 

The virus would be on the wire which transmits data through it to the system. The virus would be in the chamber, where it is acting like a neuron. This is another way to use the virus as a tool. 


The image I: (https://en.wikipedia.org/wiki/Quantum_computing)

Other images: (Wikipedia and Scitech Daily)


Tuesday, November 5, 2019

Problems of a quantum computer, and how they might be solved someday.






Problems of a quantum computer, and how they might be solved someday.

The attempt to create ultrafast microprocessors is really difficult, and sometimes people, like me have suggested that the temperature of the processor would decrease in the superconducting temperature. The problem is the silicon would transform as well superconducting, and the electricity will jump out from wire. Also, superconducting components like switches would not stop electricity, and that's why they cannot control the route of electricity because electrons pass those parts.

When we are thinking about the thing like a quantum computer, we would have problems to make qubits, what have more than two possible values. Sometimes I have thought that ionized water or Crypton based molecule would allow creating qubit, and when one side of this ionized molecule touches the gate, the value would be zero, when the two parts of the molecule touch the gate would the system get value one, and when all three parts are touching the gate, would the value be two.

This technology would be called as the "physical qubit", where ionized molecule would act as the qubit, what is the replacer of the bit in the quantum computer. But the difference between the quantum computer and normal computer is that quantum computers would handle the minimum type of information, and the information what it handles is the numbers. When there is needed the number breaking capacity, where is needed to calculate the extremely long prime numbers or quantum prime numbers, the quantum computer would be an extremely good tool.

How about virtual qubits?

In this text is the picture of the map of the railway station, and the thing is that the wires can be thought of as the railroads, where the data goes. In this model, the data, that will travel to the nucleus of the processor is filtered. Everything else, except the numeric values, what are the strongest field of the computer would be removed from the input syntaxes, what will send to the nucleus of the processor, what will handle the minimum type of data, but what will make it extremely effective way.

Those wires what will travel to the nucleus of the quantum processor would form the thing, what we can call as the virtual qubit. The four wires would bring the electrons, and the pairs of those wires would send the data to the upper levels of the system. When one wire would bring electron, the value would be zero, when two wires would bring electron, the value is one when three wires would bring electron, would the value be two. And when the four wires would bring electron to quantum level the value would be three.

So the value of the linear qubit would be (n-1).  When we are thinking about the output, each wire, what is taking the data away from the quantum processor can be connected to the own conventional processor. And that kind of thing would revolutionize the handling of data.

Thursday, August 29, 2019

Quantum computers and artificial intelligence

Quantum computers and artificial intelligence

Quicksilver can act as a neurotransmitter in the new type of neuro computers or neurocomputer simulations. 

Neurocomputers can think like humans, but they might base the technology, where nanotubes are transferring the bites or in this case, the quicksilver drops, what is loaded with electricity between the microchips. Quantum computers are not the same thing with artificial intelligence, but the quantum computer would make the artificial intelligence possible, what bases the computer itself. There is a possibility to create computers, which can simulate the human brains by using the new nanotechnical processors, where is not the wire connection between those processors.

In those computers, where the traditional electric wires would be replaced by nanotubes. The quicksilver drops, what are loaded with electricity can be used as the neurotransmitters in this kind of computers, what mission would simulate the actions of human brains. Those extremely small drops would travel in the system in the fullerene tubes, and then they would jump between the small size microprocessors like neurotransmitters. And the electricity, what is stored to those drops can transfer the electricity between the microprocessors.

Quantum computer simulation

The quantum computer simulators would use the virtual qubits what might have a different kind of shapes. One version of those virtual qubits might look like a line of sticks, where would be the electricity, and in that case, the quantum computer would work by using electron beams, what are targeted to those sticks, and that system might work by two ways.

The thing is that when the electron shower or beam hits to one stick, would the value of qubit 0 if the electron shower hits to two sticks, there would be value 1 if the electrons would hit to three sticks, the qubit would get value 2. One thing, where qubits are made by using the shower of electrons, what is hitting to sticks are making one thing possible, what might nobody thought before this.

That makes the number of values limitless, and the sticks would only need a connection to make that thing true. The thing what limits the values of a qubit is the places, where the sticks can be put. And in this case, the small tower, what is made by the iron atoms can work as the stick, and then the electron showers would shoot to those sticks. This technology can use the nano-tubes, where the electrons are moving, and if there would be small magnet rings, that would make possible to focus the electrons precisely to a certain stick.

That thing is necessary for creating that kind of systems or actually, the functional system requires the extremely sharp focus of the electron shower, because if the electron shower effects to more than one stick or tower in the same time, the system would not work. There is one way to make this kind of system operational, which would base the idea of using the photocells, and the sticks would have the plus-polaric electric capacity, what means that those sticks would pull electrons to them. And when an electron hits to that stick that would cause the electric arc, what can be detected by using the photocells.

The problem is that this kind of system would be a little bit too large for creating the functional version of the quantum computer. In the big -size this system could use quicksilver for transferring the electricity for the curtains stick, and this is the reason, why somebody explains some pyramids like the ancient computers. But those things are actually at the hypothetic level, and they are not scientifically proven. But when we are thinking about the use of the quicksilver in the new kind of computers, we must remember that material can similarly transfer data as neurotransmitters.

And that thing would be a help to create the most radical computers in the world and in those computers the nano-sized processors would be separated from together, and that means that the quicksilver drops would transfer electricity between those components. Those computers would emulate the processes of human brains more effectively than ever before. Maybe in the land of tomorrow, the "iron-based" artificial intelligence would be true.

Friday, August 23, 2019

Quantum teleportation and nanotechnology brings quantum computers closer

Quantum teleportation and nanotechnology brings quantum computers closer


Nanomachines can be used as qubits


In the qubits, what are transporting data in the quantum computers has three values 0, 1 and 2. That means that those qubits can't be translated to data by simply cutting the electricity in the wires, but I will return that thing later. There are two ways to create qubits. One version is to create the molecule by using the nanotechnology.

This molecule would be a combination of the metal and some other atoms what are not conducting electricity. The mission of the atoms, what is between the metal atoms is to isolate them from each other. In this scenario, the "Y" shaped molecule would create the qubit in a very simple way.

But creating those molecules is quite difficult. One of the most promising version could be combined iron and some big sized atoms, and the magnet field would pull that molecule through the sensor, what detects the voltage or the position of that molecule.

 If one side of this molecule would touch the sensor or the gate the value of that molecule would be 0, if two heads of the molecule touch the gate, the value can be 1 and if the all heads of that molecule would touch the gate, the value of that molecule would be 3. This would be the nanotechnical version of qubits, and those molecules can be recycled.

The thing is that the molecule or later hydrogen atom must touch the gate for being registered. And that would make some problems for that kind of things. The value of the qubit would be determined with the level of voltage of those qubits, and if only one head of qubit touches the gate the voltage would be lowest. And the lowest voltage in that gate would be translated as 0.

Use of hydrogen atoms as the qubits

If we think about the short-distance quantum teleportation, we must realize that thing can move very small particles in the extremely high speed, or the speed what would ever reach before. And how this thing is connected with quantum computers. If we think the most complicated part of the quantum computers the forming qubits, the particles what are transporting data inside the computer and processors, we are facing the new opportunity for creating the system, what uses qubits as the information transporter.

The problem with qubits is that it has at least values 0,1 and 2 or even more, and the problem is that this kind of thing needs other ways to send numbers than just cutting the electricity of the wire. In normal bit computer, the system can just cut the electricity in the wire, and that causes the effect, where the break in the electricity, what takes a certain time is translated to 0. And in normal bits, there are two layers 0 and 1. But how we could create the qubit or particle, what has more levels than zero and one?

That thing would happen by using hydrogen atoms. If the atom comes to detector the electron ahead it, the atom would get value 0, if it comes to the sensor or the gate proton ahead, it would get 1 or if it comes that way, that both electron and proton would touch the sensor or gate in the same time, this data transportation particle would get value 2, what makes it operate as the qubit.

But the problem is that we cannot calculate the place of the electron when it orbits the nucleus sharp enough, that the hydrogen atom would reach the gate in a certain position. And that thing would be an extremely difficult and slow method to shoot hydrogen through the gate in the precise right time. But if we could stop the electron, while it orbits the nucleus, that thing would make possible to create the qubit. This thing means that we could simply shoot or transport the atoms through the gate by using extremely high speed, which means that the electron would not have time to move in the orbiter, while it would face the sensor.

So this sensor would be like the gate and the position of the hydrogen atom would determine the level of the qubit. This is one very interesting method to make the quantum computer, and if we could create the singularities across the microprocessor, that thing would make the moving those hydrogen atoms or qubits in the processor easy. But that thing would need little bit advantages, because of the system, where small size black holes are creating the wormholes would be hard to make.

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