Entanglement in Quantum Search Database: Periodicity Variations and Counting

Q2 Physics and Astronomy Quantum Reports Pub Date : 2022-07-22 DOI:10.3390/quantum4030015
D. Ellinas, Christos Konstandakis
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Abstract

Employing the single item search algorithm of N dimensional database it is shown that: First, the entanglement developed between two any-size parts of database space varies periodically during the course of searching. The periodic entanglement of the associated reduced density matrix quantified by several entanglement measures (linear entropy, von Neumann, Renyi), is found to vanish with period O(sqrt(N)). Second, functions of equal entanglement are shown to vary also with equal period. Both those phenomena, based on size-independent database bi-partition, manifest a general scale invariant property of entanglement in quantum search. Third, measuring the entanglement periodicity via the number of searching steps between successive canceling out, determines N, the database set cardinality, quadratically faster than ordinary counting. An operational setting that includes an Entropy observable and its quantum circuits realization is also provided for implementing fast counting. Rigging the marked item initial probability, either by initial advice or by guessing, improves hyper-quadratically the performance of those phenomena.
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量子搜索数据库中的纠缠:周期性变化与计数
采用N维数据库的单项搜索算法,结果表明:首先,在搜索过程中,数据库空间的两个任意大小部分之间产生的纠缠是周期性变化的。通过几种纠缠度量(线性熵,von Neumann,Renyi)量化的相关降密矩阵的周期纠缠被发现随着周期O(sqrt(N))而消失。其次,相等纠缠的函数也随着相等的周期而变化。这两种基于大小无关数据库双分区的现象,都体现了量子搜索中纠缠的一般尺度不变性质。第三,通过连续消除之间的搜索步骤数来测量纠缠周期性,确定数据库集基数N,比普通计数快二次方。还提供了一种包括熵可观测及其量子电路实现的操作设置,用于实现快速计数。通过最初的建议或猜测来操纵标记项目的初始概率,可以超二次地提高这些现象的性能。
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来源期刊
Quantum Reports
Quantum Reports Physics and Astronomy-Physics and Astronomy (miscellaneous)
CiteScore
3.30
自引率
0.00%
发文量
33
审稿时长
10 weeks
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