Examples of using Quantum computation in English and their translations into Vietnamese
{-}
-
Colloquial
-
Ecclesiastic
-
Computer
Cold atoms based quantum computation with one clean qubit.
And that came as a surprise to me,because I was actually hired to work on quantum computation.
Subsequently, it evolved into the Centre for Quantum Computation, now based at DAMTP in Cambridge.
It provides a very simple model which captures all of the power of quantum computation.
IBM added that it will open a commercial Q Quantum Computation Center in Poughkeepsie, New York this year.
IBM Q System Onerepresents an important step torward the commercialization of the quantum computation.
Later this year,IBM will also open its first IBM Q Quantum Computation Center for commercial customers in Poughkeepsie, New York.
Within days of each other back in 1998,two teams published the results of the first real-world quantum computations.
I think that the US retains a strong lead in quantum computation with other important centers being Canada, the UK, the EU, Australia, Singapore, Israel.".
This fabrication method has potential for applications inquantum cryptography(i.e. single photon sources) and quantum computation.
In most of the quantum-communication schemes and in distributed quantum computation, the initial state is really unknown and from an independent qubit,” says Pan.
An enormous amount of progress in this field has been made in the past decade andtrapped ions remain a leading candidate for quantum computation.
Ekert andcolleagues have made a number of contributions to both theoretical aspects of quantum computation and proposals for its experimental realisations.
Ekert's research extends over most aspects of information processing in quantum-mechanical systems,with a focus on quantum cryptography and quantum computation.
Photons are expected to play an important role in quantum computation because they can carry bits of quantum information(qubits) over long distances.
His research interests extend over most aspects of information processing in quantum-mechanical systems,with a focus on quantum communication and quantum computation.
In just a six-month period, for example, IBM was able to extend the coherencetimes(the amount of time available to perform quantum computations) for the 20 qubit processor to be twice that of the 5 and 16 qubit systems.
The programme spans from the most fundamental aspects of quantum physics of matter,to the discovery of topological effects therein and to their applications in the field of quantum computation.
But Nielsen knows quantum computation very well- which is why he can not only tell you that this is impossible but he also provides you with a rigorous enough paper that demonstrates the impossibility of this"quantum computer employed as a massively parallel computer" in detail.
It integrates with common quantum chemistry simulation packages,such as Psi4 and PySCF, along with quantum computation environments such as Rigetti's Forest.
Zhao anticipates that“We're maybe looking at three to five years in the future when we can actually use thehardware built by the experimentalists to do meaningful quantum computation with application in artificial intelligence.”.
The reason for quantizing a theory is to deduce properties of materials,objects or particles through the computation of quantum amplitudes, which may be very complicated.
This is imperative in considering other types of computation, such as that occurs in the brain or in a quantum computer.
A quantum computer is a typeof computer that uses quantum mechanics so that it can perform certain kinds of computation more efficiently than a regular computer can.
The ability of a quantum computer to perform multiple computations simultaneously(or in parallel, in computer terms) is called quantum parallelism.
The term for a clear case in which a quantum computer can perform computations or run algorithms that no classical computer, now or in the conceivable future, could is“quantum advantage.”.
It is this property that allows a quantum computer to work on a million computations at once, while your desktop PC works on one.
Without a tightly controlled environment, the quantum bits(qubits) used to perform computations can see a drop in performance.
According to physicist David Deutsch, this parallelism allows a quantum computer to work on a million computations at once, while your desktop PC works on one.
In other words, instead of operating on a strictly binary systemof"on" and"off," the human brain works with computations that are in a superposition of different quantum states at the same time.