绝热量子优化的集成编程和开发环境

T. Humble, A. McCaskey, R. Bennink, J. Billings, E. D'Azevedo, Blair D. Sullivan, Christine Klymko, H. Seddiqi
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引用次数: 26

摘要

绝热量子计算是量子信息处理所提供的计算能力的一个有前途的途径。最近的绝热硬件的可用性提出了如何评估绝热量子优化(aaco)程序的挑战性问题。处理器的行为取决于合成绝热量子程序的多个步骤,每个步骤都是高度可调的。我们为aaco提供了一个集成的编程和开发环境,称为Jade绝热开发环境(Jade),它提供了对程序合成过程中所采取的所有步骤的控制。JADE捕获严格指定aqos算法所需的工作流,同时允许各种问题类型、编程技术和处理器配置。我们还集成了JADE与量子模拟引擎,使程序分析使用数值计算。计算引擎支持针对各种度量和计算资源定制的仿真方法的插件。我们介绍了JADE的设计、集成和部署,并讨论了它在量子计算机科学界对aqos程序进行基准测试的潜在用途。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An integrated programming and development environment for adiabatic quantum optimization
Adiabatic quantum computing is a promising route to the computational power afforded by quantum information processing. The recent availability of adiabatic hardware has raised challenging questions about how to evaluate adiabatic quantum optimization (AQO) programs. Processor behavior depends on multiple steps to synthesize an adiabatic quantum program, which are each highly tunable. We present an integrated programming and development environment for AQO called Jade Adiabatic Development Environment (JADE) that provides control over all the steps taken during program synthesis. JADE captures the workflow needed to rigorously specify the AQO algorithm while allowing a variety of problem types, programming techniques, and processor configurations. We have also integrated JADE with a quantum simulation engine that enables program profiling using numerical calculation. The computational engine supports plug-ins for simulation methodologies tailored to various metrics and computing resources. We present the design, integration, and deployment of JADE and discuss its potential use for benchmarking AQO programs by the quantum computer science community.
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