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Computational Cluster with Entangled States

Computational Cluster with Entangled States
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摘要 In this article the inherent computational power of the quantum entangled cluster states examined by measurement-based quantum computations is studied. By defining a common framework of rules for measurement of quantum entangled cluster states based on classical computations, the precise and detailed meaning of the computing power of the correlations in the quantum cluster states is made. This study exposes a connection, arousing interest, between the infringement of the realistic models that are local and the computing power of the quantum entangled cluster states. In this article the inherent computational power of the quantum entangled cluster states examined by measurement-based quantum computations is studied. By defining a common framework of rules for measurement of quantum entangled cluster states based on classical computations, the precise and detailed meaning of the computing power of the correlations in the quantum cluster states is made. This study exposes a connection, arousing interest, between the infringement of the realistic models that are local and the computing power of the quantum entangled cluster states.
作者 Nikolay Raychev Nikolay Raychev(Varna University of Management, Varna, Bulgaria)
出处 《Journal of Applied Mathematics and Physics》 2016年第9期1777-1786,共11页 应用数学与应用物理(英文)
关键词 Quantum Computing Computational Complexity Cluster States GATES Quantum Computing Computational Complexity Cluster States Gates
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