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

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/

Wednesday, September 22, 2021

How to make a switch or router that uses the DNA molecule for routing data?



What the DNA needs that it can control a physical robot? The fact is that DNA needs a switch or router that can transmit the electric signals between microchips in the multiprocessor system. The DNA can control nano-size switches simply when the length of the molecule is chancing it press nano-size switch. When the DNA is controlling the router it can be connected to the nano-size needle and moving that thing the system can aim the route of the signal. 

Making the router or switch that uses the DNA molecule as the controller is quite an easy thing. The DNA molecule is in the chamber and changing the length of that molecule is possible to determine if the value of the connection is 0 or 1. The DNA molecule would touch the nanotechnical switches. 

When the length of the DNA increases it pushes those contact layers. And that thing makes it possible to cut or connect the circuits in these nanotechnical chambers. But the DNA molecule can act as the 3-layer qubit. In that case, the molecule must curve to the form of the "S"-letter. 

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The symbols:

1) The DNA molecule

2) Switches

In diagram 1, the value of the binary circuit is one (1).

In diagram 2, the value of the binary circuit is zero (0).

In diagram 3, is the diagram of the qubit that has states 0,1, and 2. When all three switches are down, the value of qubit is 2. When the ends of the molecule are pressing the switches the value of the qubit is one (1). 

And when only one of the switches is pushed. The qubit tells that it's ready for taking commands. The spring-looking carbon molecules can make the same thing But the DNA is easier to get. 


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In image two is portrayed the positions of the DNA molecule when it controls the switch. In diagram 1 the DNA is connecting the nanotechnical switches and the value of the circuit is one. In diagram two is the DNA is not pushing the nanotechnical switches. 

And the value of the circuit is 0. In diagram three is the three-layer DNA controlled qubit. When the ends of the DNA are pushing the switches that bring the value 1. When the middle-point of the switches are pushing the center switch the value of the qubit is two. The values or states of the qubit are 0,1, and 2. 

The ends of the molecule are determining the values 0 and 1 in the qubit. And the middle point of the DNA would make the third state of the chemical qubit. If the DNA molecule touches and pushes three nanotechnical switches at the same time. The value of the qubit is 2. The values 0 and 1 are telling that if the system is working. So if the DNA molecule is pushing only one button that tells that the qubit is ready for taking orders. 

But theoretically, the DNA molecule can operate a multi-layer qubit. In that case, every point between the ladder-like points between the base pairs will put the switch. And every switch is operating its level of the qubit. 

The calculation of the layers or states of the qubit always begins from 0. That value determines that the quantum computer turns off. Value 1 tells that the system is ready for taking orders. So if we are thinking that the DNA molecule pushes three switches in the nanotechnical chamber that means that if all three switches are connected the value of the qubit is 2. The values are 0,1, and 2. 

The change of the shape or length of the DNA molecule can adjust by connecting magnesite in those points of the molecule. Or there is the possibility to use ventilation, which brings electrolytic liquid into the chamber. And that liquid would adjust the form of the DNA molecule. 


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

Monday, September 13, 2021

The wave-particle duality makes the possibility to create new and more effective quantum computers.



In ultra-secure quantum network systems, the qubit is superpositioned and entangled in both devices. That thing makes it possible to create the most secure and powerful data transmitting system.

But how to create a system. Which is the same way flexible as the normal 5g data communication systems? The idea is that the long-range data transmitting will happen by using radio waves. Then that data is packed in the laser rays that are forming the qubit by using wave-particle duality. 

The X-ray lasers can also make it possible to communicate through the wall by using laser data transmitting. But the problem with x-ray lasers is that they are causing cancer. So the only way to communicate through the walls is to use radio waves. 

The thing is that the qubit that uses wave-particle duality for transporting data looks a little bit like human brains. The idea of this kind of system is to benefit the wave-particle duality transporting data over long distances. The data will store in laser rays that are shot to high-energetic light quantum. 

And that process will create electrons and positrons. Then the electrons are turning to qubits and deliver the data to sensors. This type of system is a little bit too futuristic. But the quantum computers are advancing faster than ever before. And maybe the wave-particle duality is benefiting quite soon. 


The qubit that can benefit the wave-particle duality might look like this:





1) Light quantum 

2) Laser that brings photons to the impact point

3) Impact point where electrons and positrons are forming

4) Sensors that are downloading data from qubit

This type of system might be the key to more secure and powerful data handling tools than ever before. If that kind of system is possible to make they are revolutionizing quantum computing. And make it possible to turn the quantum network wireless. The laser-radio wave-based hybrid systems can make the dream of the quantum WLAN true. 

The data is transporting through the air by using radio waves. Then that data is loaded into the laser system. After that, the laser system will shoot that data to the impact point of the light quantum. The qubit itself can be positron or electron. If the system uses positrons as the qubit that thing will make the system ultra-secure. 

The qubit that is made by an electron (or positron) can carry in the magnetic tank. The qubit hovers in the tank, and the auxiliary radiation helps it to keep states. If that data is stored in positrons. The annihilation will destroy the qubit. And that makes it impossible to steal the quantum USB. 

If the quantum USB to the wrong port. That opens the chamber and the qubit will destroy the computer and its user. In some doomsday visions, the Teller's bomb or antimatter bomb will mask as the USB stick. Then that weapon will slip into the enemy command center. And after that, the air will impact the positrons.

The superpositioned and entangled qubits can use as the data transporters between mobile devices. In that case, the qubit is superpositioned between the mobile devices. 

The "spooky action at distance" or quantum teleportation is based on superpositioned and entangled particles. That effect is possible to make even in long distances. Tha thing makes it possible to transmit data to Alpha Centauri in real-time. 

But another thing is that quantum teleportation can be used as the data transmission between traditional binary computers. But if we want to make the quantum mobile system that uses the qubit as the data transmitter we can make the most powerful and secured communication system. In that system, the qubit will be superpositioned between two mobile devices. 

And that is making it possible to create the ultra-secure data channel between devices. But the most interesting thing is that by using superpositioned qubits multiplied between many quantum computers is possible to transform multiple quantum computers to an entirety where even thousands or millions of quantum computers acting as one extremely large quantum computer.

()https://www.economist.com/the-economist-explains/2017/03/16/what-is-spooky-action-at-a-distance

()https://en.wikipedia.org/wiki/Wave%E2%80%93particle_duality

()https://en.wikipedia.org/wiki/Quantum_teleportation

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

Thursday, September 9, 2021

Scaled quantum computing could revolutionize everything in the world.



What would you do if you get unlimited access to quantum computers through the Internet? Today the use of quantum computers over the Internet is possible by using the door servers. Those door servers are the binary computers that encode the binary code for resending to the quantum computers. 

When the quantum computer is finishing its mission system returns the solution to the door computer. That sends it across the Internet to the remote workstation. But maybe someday tomorrow, we can send the data in the form of a qubit through the quantum Internet. 


The scaled quantum computer can revolutionize encrypting. 


The scaled quantum computers can change cryptology forever. The only thing that can break the encryption algorithm that is made by using quantum computers is another quantum computer. 

Quantum computers can generate so long quantum prime numbers and share the calculations to the multiple states of the qubit. That means the quantum computer can share the calculation to multiple levels and each level can use the different quantum prime number. 

Or they can use multiple quantum decimal numbers at the same time. That means that binary computers cannot break those codes that are made by using quantum computers. 


The quantum computer can also make it possible to create a new type of independent CAD/CAM (Computer-Aided Design/Computer-Aided Manufacturing) applications and complicated simulations. 

But the cryptology is not the only thing that can revolutionize by quantum computers. Quantum computers can calculate also the other calculations than make the multiple quantum decimal prime numbers for the cryptology. 

Those computers can run things like graphic programs. And especially the CAD/CAM (Computer-Aided Design/Computer-Aided Manufacturing) systems can get the new kick from the quantum computers. 

The complex artificial intelligence programs and algorithms can search vital data for products from the Internet. Then the system can make the database from that data and run the necessary simulations. If those systems are making things like cars. 

They can create the simulation of the things that are causing the loss of energy. Then they can adjust the angles of the body and tires for making the product better. Those systems can make automatically fast, economical, and safe cars. The extremely high calculation power of the quantum systems makes it possible to simulate things like airflow, humidity, and other parameters. 

Then it can connect the databases to their entirety and send the data to the manufacturing robots. The flexible automatized production lines can use the same modular simulations to make trains, ships, and aircraft. In the modular system the element, where the transportation system is operating. Then the artificial intelligence can search all data of those topics from the net. 

And then connect that data to more economic and effective solutions. In that case values like the needed payload and people that that system must carry with the needed top speed and operational range are stored in the databases. And then the system will create the new product by using those values without human control. AI is one of the most effective tools for creating new products if it can run on enough effective platforms. 


The AI can make it possible to create the customized computer games for every customer. 


Somewhere in the future of the entertainment industry can use effective AI-based systems for creating movies and computer games that are customized for each user. In the conventional version, the system can collect the data from the free games. And then calculate what kind of characters, environment and other kinds of things pleases the customer. Then it can create an entirety that should please the customer. 

But there is the possibility to make a more futuristic version of that thing. That system can use the BCI (Brain-Computer Interface) for scanning the nervous system of the customer. 

And then the system can create the game, where characters, story, and environment are custom for pleasing each user. The computer has databases that it uses like building bricks that are connected to the entirety. The system follows what pleases the customer, and then it creates the game that is the perfect experience. 


()https://marketscale.com/industries/industrial-iot/scaled-quantum-computing-could-shape-the-future-of-cryptography/


Image:()http://www.businesskorea.co.kr/news/articleView.html?idxno=19682


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

Thursday, September 2, 2021

The quantum teleportation between two microchips is confirmed.




Researchers teleport information between two microchips. And that can be the key to the most secured data network that has ever been seen before. But the information teleportation also makes it possible to hack every single computer in the world. The thing that is needed to make is the quantum channel between the targeted microchip and the receiving microchip. 

That quantum channel can make by using the superpositioned entangled particle, and for making that thing the system must only know the position of the targeted microchip. Quantum teleportation makes it possible to make the new type of sensors, that can be more accurate and powerful than ever before. The particles can superposition to the human nervous system or anywhere else in the body. And they might get very accurate information from their target area. 

For making the quantum radar, that can deliver information from any space in the world the system must just superposition and entangle two particles. The other particle will be shaken or oscillate by adjusting the energy level of the particle. When the energy level of that active particle is decreasing that will send the radiation. And the receiving particle can receive that radiation. 

That kind of quantum scanner which is operating like a turntable needle of old fashion LP-player can search the extraordinary cells in the body. The system is the enhanced version of the scanning tunneling microscope. 

If the satellite has this kind of system in use, it can search every surface on earth, and those systems can transfer data from the nervous system of the individual people. But for making the long-range quantum teleportation true the system requires a powerful energy source. But the quantum teleportation is making it possible to create many new tools. 


https://internet.wtf/technology/kKxCCuJpuuZH



Quantum brain.


Originally the term "quantum brains" is the term that means the network of fullerene (or nano-size microprocessors) and nano-size particle accelerators. Neutrons or protons are acting as neurotransmitters. And particle accelerators are acting as axons. But the structure is very difficult to make in real life. The quantum entanglement-based system is theoretically easier to make. 

Another version of the quantum brain bases the idea that the superpositioned and entangled particles can replace the physical structures. The quantum brains are the network of superpositioned and entangled electrons that are interacting with the microprocessors. Those superpositions can form through the quantum crystals. 

The quantum crystal is the electron crystal (Wigner crystals) or they can be the gas or ions. The requirement is that the changes of the energy level of that quantum particle can recognize, that the states of the qubit can separate from each other.

And that means the hologram can also act as quantum fog. That is needed to make the data transmitted from the quantum channels to the qubit. 

Proving possible to make a stable electron crystal that doesn't require the outer magnetic field makes it possible to use the electron crystal. Or so-called " quantum fog" that is made by using hovering electrons. Stabilization of the electrons in a certain form is theoretically easy. The electrons should just position in the position where the effect of the quantum fields is fully symmetrical. 

The thing that makes the quantum fog suitable for quantum annealing is that. The changes in the "brightness" of the quantum particles, must be separated. And in quantum brains, the quantum channels between superpositioned and entangled particle pairs are given the energy to electrons. The same quantum channels are also used for receiving that data. 

The system anneals those quantum crystals through those superpositioned and entangled particles. And that thing will make it possible to transform the data to the qubit. 

The quantum crystal is the thing that interacts with the superpositioned particle pairs. And the microprocessors are needed to transmit and receive data from the system that transfers data between the end-user and quantum system. 


Image:()https://www.dailydot.com/debug/holographic-brain-images-science/


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



Six clicks separate people from each other.

“A long-observed social phenomenon suggests that people across the globe are separated by surprisingly few connections. Credit: Stock” (Scit...