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The fast-forward algorithm will unleash the power of the quantum computer.

   

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The fast-forward algorithm will unleash the power of the quantum computer.

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The Internet can give access to a quantum computer from any place on Earth. The data can input into a quantum system by using a laptop computer or even a mobile telephone. But fitting the regular two-layer bit system to the four- or more layer qubit-based quantum system is difficult. 

The quantum computer is very different than so-called regular computers. The size of those machines is enormous, and they require a special arrangement that they can work correctly. So there not yet nobody who has the quantum computer on the desk. 

The data must input to the quantum computer by using a regular computer. And in that process, the zero-one bit, or otherwise saying a two-layer bit must turn to the four or more layer qubit, which would drive data in the quantum computer. So how to make that process? 


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How to turn the bit that has layers (or values) 0 and 1 to multi-layer qubit what can connect regular bits to one entirety? 

(0,1)layer bit 1+(0,1) layer bit 2 =0,1,2,3 layer qubit. The thing that the computer must know is the serial number of the bit. And it can give those layers (0,1) in bit 1 and layers (0,1) in bit 2 values 0,1,2,3 in the quantum computers. 

So the qubit requires the fifth layer of value. And it looks like that it has values 0,1,2,3,4. The value "2" or the middle value is the "stop value" which helps the computer to share the qubit to two regular bits. 

That has two values 0 and 1. In that system, each third value is the so-called "stop value" that "stop value" would share the qubit layers into the regular bits.  If layers of the qubit are 0,1,(2),3,4,(5),6,7. The values 2 and 5 are sharing the qubit to three different bits. 


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One thing that can make the artificial intelligence algorithm that connects the bits to the four-layer qubit.  And for making the output through the normal computer it must separate the layers of the four-layer qubit into two normal bits that the solution can show on the screen. The qubit is forming actually of five layers. 

Where the middle layer is acting as a separator. The purpose of the separator layer is making easier to output the data. That is stored in the qubit. That happens by separating the layers of the qubit into two (or more) zero-one layer bits. One of the solutions would just connect two zero-one bits, and that thing can make it possible to send those 0,1 bits to the quantum computer in the form of 0,1,2,3 layer qubit. 

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(As you see in the example above the "stop value" helps to share those qubits to two bits. So the qubit has four layers and one "stop" or "ghost layer".  

That means it has values 0,1(2),3,4., where the value (2) is for "stop or "ghost layer" which separates those two bits. That will help to make the output of the result, what quantum computer would give for the regular computers for showing it to the screen of a computer)

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When we are thinking of the process that turns the (0,1) bit into four layers qubit the system must connect two (0,1) bits. The first bit can send the values 0 and 1 to the quantum computer, and the other bits are reserve for data transmission. 

That thing can make the outbreak of the power of the quantum systems. The algorithm that automatizes that process will make quantum computers more valuable than ever before. And that thing might be open the new routes for computing and science. The fact is that the new quantum computers have extremely high calculating capacity would increase the speed of creating the new and faster quantum computers.

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Sources: 

https://scitechdaily.com/new-fast-forward-algorithm-could-unleash-the-power-of-quantum-computers/


Image: https://scitechdaily.com/new-fast-forward-algorithm-could-unleash-the-power-of-quantum-computers/

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