New Two-Qubit Gate Library with Entanglement

Md Belayet Ali, T. Hirayama, Katsuhisa Yamanaka, Y. Nishitani
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引用次数: 1

Abstract

The NCV (NOT, CNOT and Controlled-V/V) gate set is most commonly used for the realization of classical reversible functions and implementation of quantum circuits. Logic operations in quantum circuits are performed by individual gates or can be expressed as matrix-vector multiplication. Thispaper presents a two-qubit quantum gate library which consists most commonly used elementary quantum gates NOT, CNOT, Controlled-V and Controlled-V. The new library contains all possible two-qubit quantum gates which do not produce entangled states in the final output state. Two approaches have been appliedto generate the new two-qubit quantum gate library because it hasbeen observed that some entangled gates act like non-entangledif those entangled gates are merged with other valid gates in thelibrary. The experimental result shows the difference betweenthe libraries with and without considering entangled gates in theprocess of generating new gates.
新的具有纠缠的双量子比特门库
NCV (NOT, CNOT和Controlled-V/V)门集是实现经典可逆函数和实现量子电路最常用的器件。量子电路中的逻辑运算由单独的门执行,或者可以表示为矩阵向量乘法。本文提出了一个由最常用的基本量子门NOT、CNOT、Controlled-V和Controlled-V组成的双量子位量子门库。新的库包含所有可能的在最终输出状态下不会产生纠缠态的双量子位量子门。由于已经观察到一些纠缠的门与库中的其他有效门合并时,一些纠缠的门表现得像非纠缠的门,因此应用了两种方法来生成新的双量子位量子门库。实验结果表明,考虑和不考虑纠缠门的库在生成新门的过程中存在差异。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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