Examples of using Qubit in English and their translations into Vietnamese
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Computer
If the qubit is in a superposition of the 1 state and the 0 state, and it performed an calculation with another qubit in the same superposition, then one calculation actually obtains 4 results:
steps for quantum computers, especially IBM has started bringing quantum 5 qubit computers to the“cloud.” cloud”so users around the world can get used to and test the power of computers.
colleagues from Yale University have solved the problem by making the cavity itself part of a 2D wire and setting inside a superconducting tunnel junction as the qubit instead of an atom.
steps for quantum computers, especially IBM has started bringing quantum 5 qubit computers to the“cloud.” cloud”so users around the world can get used to and test the power of computers.
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In the experiment, an"evolution program" was launched which caused the qubits to become an increasingly complex changing pattern of zeros and ones.
This diagram shows a possible design of a topological quantum computer containing four qubits.
Today's state-of-the-art devices boast no more than a few dozen qubits, and Hensinger acknowledges that it would take a“massive” amount of work(and around £100m)
In general, a quantum computer with n qubits can be in an arbitrary superposition of up to 2n different states simultaneously(this compares to a normal computer that can only be in one of these states at any one time).
Professor Karimi's team was able to clone the photons that transmit information, namely the single carriers of light known as qubits, as well as quantum theory allows, meaning that the
It might not seem like much, but that fact that it was simulated by a seven-qubit chip shows that if we had more qubits at our disposal, we might be able to run extremely complex molecular simulations.
Nearly a decade later, in 1994, AT&T's Peter Shor devised an algorithm that could use only 6 qubits to perform some basic factorizations… more cubits the more complex the numbers requiring factorization became, of course.
Yet Martinis thinks that once he can get his qubits reliable enough to put 100 of them on a universal quantum chip, the path to combining many more will open up.
Physicists have long theorized that harnessing interactions between qubits could enable computers to excel at certain calculations, such as probing otherwise unsearchable databases and cracking conventional encryption.
There are exponentially many of them- for\(N\) qubits, you have\(2^N\) complex amplitudes- and they can be manipulated like an exponentially large number of classical data.
shown here, that uses lasers to manipulate the qubits of super-chilled beryllium ions.
what topological qubits are, but it's essentially harder to disturb than classical qubits(and in quantum computing,
chains of 0s and 1s, whereas quantum computers use qubits, which can be 1,
corporate quantum researchers I spoke with agreed that somewhere between 30 and 100 qubits- particularly qubits stable enough to perform a wide range of computations for longer durations- is where quantum computers start to have commercial value.
100 qubits-particularly qubits stable enough to perform a wide range of computations for longer durations-is where quantum computers start to have commercial value.“.