计算机科学
量子计算机
可扩展性
量子位元
量子算法
量子
可执行文件
模块化设计
方案(数学)
安萨茨
计算科学
计算机工程
理论计算机科学
算法
物理
数学
量子力学
程序设计语言
数学分析
数据库
作者
Run-Hong He,Xusheng Xu,Mark Byrd,Zhao-Ming Wang
出处
期刊:Quantum science and technology
[IOP Publishing]
日期:2023-09-28
卷期号:9 (1): 015004-015004
被引量:1
标识
DOI:10.1088/2058-9565/acfe38
摘要
Abstract Any quantum program on a realistic quantum device must be compiled into an executable form while taking into account the underlying hardware constraints. Stringent restrictions on architecture and control imposed by physical platforms make this very challenging. In this paper, based on the quantum variational algorithm, we propose a novel scheme to train an Ansatz circuit and realize high-fidelity compilation of a set of universal quantum gates for singlet-triplet qubits in semiconductor double quantum dots, a fairly heavily constrained system. Furthermore, we propose a scalable architecture for a modular implementation of quantum programs in this constrained systems and validate its performance with two representative demonstrations, the Grover’s algorithm for the database searching (static compilation) and a variant of variational quantum eigensolver for the Max-Cut optimization (dynamic compilation). Our methods are potentially applicable to a wide range of physical devices. This work constitutes an important stepping-stone for exploiting the potential for advanced and complicated quantum algorithms on near-term devices.
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