Optimal SWAP gate insertion for nearest neighbor quantum circuits

R. Wille, Aaron Lye, R. Drechsler
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引用次数: 71

Abstract

Motivated by its promising applications e.g. for database search or factorization, significant progress has been made in the development of automated design methods for quantum circuits. But in order to keep up with recent physical developments in this domain, new technological constraints have to be considered. Limited interaction distance between gate qubits is one of the most common of these constraints. This led to the development of several strategies aiming at making a given quantum circuit nearest neighbor-compliant by inserting SWAP gates into the existing structure. Usually these strategies are of heuristic nature. In this work, we present an exact approach that enables nearest neighbor-compliance by inserting a minimal number of SWAP gates. Experiments demonstrate the applicability of the approach which enabled a comparison of results obtained by heuristic methods to the actual optimum.
最近邻量子电路的最佳SWAP门插入
由于量子电路在数据库搜索或因式分解等方面的应用前景广阔,在量子电路自动化设计方法的发展方面取得了重大进展。但是为了跟上这一领域的最新物理发展,必须考虑新的技术限制。门量子比特之间有限的相互作用距离是这些限制中最常见的一个。这导致了几种策略的发展,旨在通过将SWAP门插入到现有结构中,使给定的量子电路最近邻兼容。通常这些策略都是启发式的。在这项工作中,我们提出了一种精确的方法,通过插入最少数量的SWAP门来实现最近邻遵从性。实验证明了该方法的适用性,可以将启发式方法得到的结果与实际最优结果进行比较。
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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