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Quantum circuit physical design methodology with emphasis on physical synthesis

机译:注重物理综合的量子电路物理设计方法

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摘要

In our previous works, we have introduced the concept of “physical synthesis” as a method to consider the mutual effects of quantum circuit synthesis and physical design. While physical synthesis can involve various techniques to improve the characteristics of the resulting quantum circuit, we have proposed two techniques (namely gate exchanging and auxiliary qubit selection) to demonstrate the effectiveness of the physical synthesis. However, the previous contributions focused mainly on the physical synthesis concept, and the techniques were proposed only as a proof of concept. In this paper, we propose a methodological framework for physical synthesis that involves all previously proposed techniques along with a newly introduced one (called auxiliary qubit insertion).We will show that the entire flow can be seen as one monolithic methodology. The proposed methodology is analyzed using a large set of benchmarks. Experimental results show that the proposed methodology decreases the average latency of quantum circuits by about 36.81% for the attempted benchmarks.
机译:在我们以前的工作中,我们引入了“物理合成”的概念作为考虑量子电路合成和物理设计的相互影响的方法。虽然物理合成可以涉及多种技术来改善所得量子电路的特性,但我们提出了两种技术(即门交换和辅助量子位选择)来证明物理合成的有效性。但是,先前的贡献主要集中在物理合成概念上,而提出的技术仅作为概念的证明。在本文中,我们提出了一种物理合成的方法框架,其中涉及所有先前提出的技术以及新引入的技术(称为辅助qubit插入),我们将证明整个流程可以看作是一种整体方法。使用大量基准对所提出的方法进行了分析。实验结果表明,对于所尝试的基准测试,该方法可将量子电路的平均等待时间减少约36.81%。

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