量子中间件:混合量子-经典系统的编排

Ismael Faro, Iskandar Sitdikov, David Garcia Valiñas, Francisco Martín-Fernández, Christopher Codella, Jennifer R. Glick
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引用次数: 0

摘要

量子计算有可能彻底改变我们在各个领域解决复杂问题的方式。与经典计算机相比,它的独特特性,如叠加和纠缠,允许在某些计算中加速。在本文中,我们表明将量子计算纳入异构计算架构是可能的,并且可能大大提高解决各种问题的整体性能和效率。我们提出了一种集成量子计算和经典计算的异构计算架构。我们描述了如何使用广泛可用的开源软件实现该体系结构,并提供了一个参考实现。我们还讨论了潜在的好处和挑战。我们的目标是强调量子计算在未来计算中的重要性,以及如何利用我们已有的工具实现这一目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Middleware for Quantum: An orchestration of hybrid quantum-classical systems
Quantum computing has the potential to revolutionize the way we solve complex problems in various fields. Its unique features, such as superposition and entanglement, allow for speedup in certain computations compared to classical computers. In this paper, we show that incorporating quantum computing into a heterogeneous computation architecture is possible and potentially can greatly enhance the overall performance and efficiency of solving a wide range of problems. We propose a heterogeneous computation architecture that integrates quantum computing and classical computing. We describe how this architecture can be implemented using widely available opensource software and provide a reference implementation. We also discuss potential benefits and challenges. Our goal is to highlight the importance of seamless inclusion of quantum computing in the future of computation and how it can be achieved with tools we already have.
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