A survey on quantum computing technology
A survey on quantum computing technology
The power of quantum computing technologies is based on the fundamentals of quantum mechanics, such as quantum superposition, quantum entanglement, or the no-cloning theorem. Since these phenomena have no classical analogue, similar results cannot be achieved within the framework of traditional computing. The experimental insights of quantum computing technologies have already been demonstrated, and several studies are in progress. Here we review the most recent results of quantum computation technology and address the open problems of the field.
Quantum computations, Quantum computer, Quantum entanglement, Quantum information processing
51-71
Gyongyosi, Laszlo
bbfffd90-dfa2-4a08-b5f9-98376b8d6803
Imre, Sandor
2def242c-1cb7-4b12-8a16-351a5a36e041
1 February 2019
Gyongyosi, Laszlo
bbfffd90-dfa2-4a08-b5f9-98376b8d6803
Imre, Sandor
2def242c-1cb7-4b12-8a16-351a5a36e041
Abstract
The power of quantum computing technologies is based on the fundamentals of quantum mechanics, such as quantum superposition, quantum entanglement, or the no-cloning theorem. Since these phenomena have no classical analogue, similar results cannot be achieved within the framework of traditional computing. The experimental insights of quantum computing technologies have already been demonstrated, and several studies are in progress. Here we review the most recent results of quantum computation technology and address the open problems of the field.
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e-pub ahead of print date: 23 January 2019
Published date: 1 February 2019
Keywords:
Quantum computations, Quantum computer, Quantum entanglement, Quantum information processing
Identifiers
Local EPrints ID: 430386
URI: http://eprints.soton.ac.uk/id/eprint/430386
ISSN: 1574-0137
PURE UUID: 4e7ea2c0-783c-4ecd-828f-c6042aa2d49f
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Date deposited: 26 Apr 2019 16:30
Last modified: 05 Jun 2024 19:19
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Author:
Laszlo Gyongyosi
Author:
Sandor Imre
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