量子电路的验证优化器

IF 1.5 2区 计算机科学 Q3 COMPUTER SCIENCE, SOFTWARE ENGINEERING
Kesha Hietala, Robert Rand, Liyi Li, Shih-Han Hung, Xiaodi Wu, Michael Hicks
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引用次数: 0

摘要

我们提出了voqc,第一个经过验证的量子电路优化器,使用Coq证明助手编写。量子电路是用一种简单的低级语言sqir来表示的,sqir是一种小的量子中间表示,它深深嵌入在Coq中。优化和其他转换表示为Coq函数,这些函数在sqir程序的语义方面被证明是正确的。Sqir程序表示复值矩阵,这在量子计算中是标准的,但是为了对使用任意数量量子比特的程序进行推理,我们用符号来处理矩阵。Sqir的精心设计和我们提供的自动化使得在voqc中编写和验证广泛的优化成为可能,包括来自尖端优化器的全电路转换。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Verified Optimizer for Quantum Circuits

We present voqc, the first verified optimizer for quantum circuits, written using the Coq proof assistant. Quantum circuits are expressed as programs in a simple, low-level language called sqir, a small quantum intermediate representation, which is deeply embedded in Coq. Optimizations and other transformations are expressed as Coq functions, which are proved correct with respect to a semantics of sqir programs. sqir programs denote complex-valued matrices, as is standard in quantum computation, but we treat matrices symbolically in order to reason about programs that use an arbitrary number of quantum bits. sqir’s careful design and our provided automation make it possible to write and verify a broad range of optimizations in voqc, including full-circuit transformations from cutting-edge optimizers.

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来源期刊
ACM Transactions on Programming Languages and Systems
ACM Transactions on Programming Languages and Systems 工程技术-计算机:软件工程
CiteScore
3.10
自引率
7.70%
发文量
28
审稿时长
>12 weeks
期刊介绍: ACM Transactions on Programming Languages and Systems (TOPLAS) is the premier journal for reporting recent research advances in the areas of programming languages, and systems to assist the task of programming. Papers can be either theoretical or experimental in style, but in either case, they must contain innovative and novel content that advances the state of the art of programming languages and systems. We also invite strictly experimental papers that compare existing approaches, as well as tutorial and survey papers. The scope of TOPLAS includes, but is not limited to, the following subjects: language design for sequential and parallel programming programming language implementation programming language semantics compilers and interpreters runtime systems for program execution storage allocation and garbage collection languages and methods for writing program specifications languages and methods for secure and reliable programs testing and verification of programs
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