论文标题
可区分的量子体系结构搜索
Differentiable Quantum Architecture Search
论文作者
论文摘要
量子体系结构搜索(QAS)是量子电路自动化架构工程的过程。希望构建一个强大而通用的QAS平台,该平台可以大大加速当前的努力,以确定NISQ时代易用错误和深度有限的量子电路的量子优势。在此,我们提出了一个可区分量子体系结构搜索(DQA)的一般框架,该框架可以以端到端可区分的方式实现量子电路的自动设计。我们提出了电路设计问题的几个示例,以证明DQA的功能。例如,单一操作分解为量子门,重新设计噪声电路以提高准确性,并且自动发现并升级了用于组合优化问题的量子近似优化算法的电路布局。这些结果不仅表现出DQA的巨大潜力是NISQ应用程序开发的重要工具,而且还从理论角度提出了一个有趣的研究主题,因为它从新出现的跨学科范式中汲取了灵感,这些跨学科的跨学科范式,可替代的节目,概率的编程和量子计划。
Quantum architecture search (QAS) is the process of automating architecture engineering of quantum circuits. It has been desired to construct a powerful and general QAS platform which can significantly accelerate current efforts to identify quantum advantages of error-prone and depth-limited quantum circuits in the NISQ era. Hereby, we propose a general framework of differentiable quantum architecture search (DQAS), which enables automated designs of quantum circuits in an end-to-end differentiable fashion. We present several examples of circuit design problems to demonstrate the power of DQAS. For instance, unitary operations are decomposed into quantum gates, noisy circuits are re-designed to improve accuracy, and circuit layouts for quantum approximation optimization algorithm are automatically discovered and upgraded for combinatorial optimization problems. These results not only manifest the vast potential of DQAS being an essential tool for the NISQ application developments, but also present an interesting research topic from the theoretical perspective as it draws inspirations from the newly emerging interdisciplinary paradigms of differentiable programming, probabilistic programming, and quantum programming.