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Bounds on the quantity of entanglement in parallel quantum computing of a single ensemble quantum computer

机译:一台整体量子计算机的并行量子计算中的纠缠量界

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Speeding up of the processing of quantum algorithms has been focused on from the point of view of an ensemble quantum computer (EQC) working in a parallel mode. As a consequence of such efforts, additional speed up has been achieved for processing both Shor's and Grover's algorithms. On the other hand, in the literature there is scarce concern about the quantity of entanglement contained in EQC approaches, for this reason in the present work we study such a quantity. As a first result, an upper bound on the quantity of entanglement contained in EQC is imposed. As a main result we prove that equally weighted states are not appropriate for EQC working in parallel mode. In order that our results are not exclusively purely theoretical, we exemplify the situation by discussing the entanglement on an ensemble of n_1= 3 diamond quantum computers.
机译:从以并行模式工作的集成量子计算机(EQC)的角度,重点放在加速量子算法的处理上。由于这些努力,在处理Shor和Grover的算法上都实现了额外的加速。另一方面,在文献中,很少有人担心EQC方法中包含的纠缠量,因此,在本工作中我们研究了这种量。作为第一个结果,对EQC中包含的纠缠量施加了上限。作为主要结果,我们证明了均衡状态不适用于并行模式下的EQC。为了使我们的结果不仅仅限于理论上,我们通过讨论n_1 = 3金刚石量子计算机的集成中的纠缠来举例说明这种情况。

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