量子电路最近邻设计的一种新的二维映射方案

Subham Kumar, Anirban Bhattacharjee, Sudip Ghosh, H. Rahaman
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引用次数: 0

摘要

在过去的几年中,量子计算因其比经典计算执行并行和指数速度更快的计算能力而引起了研究人员的注意。量子电路的一个突出挑战是满足最近邻(NN)条件,即计算门的量子位必须相邻放置。基于这一事实,本文提出了一种启发式综合工作流来实现二维网格结构的神经网络电路。实现的方法已经在广泛的基准电路上进行了评估,我们已经报告了最佳结果。为了验证所述方法的有效性,我们将其与先前报道的工程进行了比较,与现有2D工程相比,平均提高了15.94%,8.89%和10.98%,与现有1D工程相比,平均提高了44.72%和70.35%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Novel 2D Mapping Scheme for Nearest Neighbor Design of Quantum Circuits
In the last few years, quantum computing has gained the attention of the researchers due to its ability to perform parallel and exponentially faster computation over classical computing. One of the prominent challenges for quantum circuits is to satisfy the nearest neighbor (NN) condition, i.e., the qubits of the computing gate must be placed adjacent. Based on this fact, here, in this paper, we have proposed a heuristic synthesis workflow to realize NN circuits in 2D grid configuration. The implemented approach has been evaluated over a broad range of benchmark circuits and we have reported the best results. To validate the efficiency of the stated approach, we have compared it with the previously reported works, an average improvement of 15.94%, 8.89% and 10.98% are obtained over the existing 2D works, and 44.72% and 70.35% are obtained over existing 1D works, respectively.
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