使用Qinterpreter释放量子算法:在领先的量子计算平台上弥合理论和实践之间的差距
Wilmer Contreras-Sepúlveda1, Braulio Misael Villegas-Martínez2, Sandra Gesing3
1Instituto Nacional de Astrofísica, Óptica y Electrónica, Tonantzintla, Puebla, Mexico.
PeerJ. Computer science
|December 9, 2024
概括
一个新的工具,Qinterpreter,统一了五个主要的量子计算库. 这种基于Python的解释器提高了跨平台量子算法开发和执行的可访问性.
科学领域:
- 量子计算是一种量子计算.
- 计算科学 计算科学
背景情况:
- 量子计算在各种科学领域提供了变革性的潜力.
- 一些量子计算库 (IBM Qiskit,亚马逊Braket,Cirq,PyQuil,PennyLane) 存在,但缺乏统一的集成.
- 需要一个基于Python的解释器来弥合这些多样化的量子框架.
研究的目的:
- 介绍Qinterpreter,这是一个新的工具,旨在统一著名的量子计算库.
- 提高量子编程的可访问性和易用性,用于教育和研究目的.
- 为了促进在多个平台上开发和执行量子电路.
主要方法:
- 使用Python面向对象编程开发Qinterpreter.
- 整合了五个主要的量子计算库:IBM Qiskit,亚马逊 Braket,Cirq,PyQuil 和 PennyLane.
- 创建了一个用户友好的Web界面,QubitHub,与Jupyter笔记本电脑一起运行.
主要成果:
- Qinterpreter成功地将五个领先的量子计算库统一到一个框架中.
- 该工具提供了开发和执行量子电路的简单方法.
- 通过QubitHub网络界面访问Qinterpreter,增强用户体验.
结论:
- 量子解释器显著提高了量子编程的多功能性和可访问性.
- 该工具作为一个有价值的教育资源,为学生和研究人员新的量子计算.
- Qinterpreter旨在将量子计算的覆盖范围扩大到不同的社区.
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