Quantum Noise Mitigation: Introducing the Robust Quantum Circuit Scheduler for Enhanced Fidelity and Throughput

Betis Baheri, V. Chaudhary, A. Li, Shuai Xu, B. Fang, Qiang Guan
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Abstract

Undoubtedly, quantum computing offers valuable acceleration for solving intricate problems. One of the primary hurdles lies in executing large-scale quantum applications on backend machines. Qubit noise, among other factors, dramatically influences the execution process. Implementing effective scheduling techniques for quantum circuits is crucial for practical quantum computing and preventing excessive waiting times. The quantum realm is distinct from classical computing in terms of optimization, performance, utilization, and waiting periods. Consequently, the parameters and components of quantum circuit scheduling diverge from those of classical computing. This paper presents Quantum Noise Mitigation: Introducing the Robust Quantum Circuit Scheduler for Enhanced Fidelity and Throughput, a straightforward yet effective scheduling framework and policy that enhances noise resilience, throughput, and the fidelity of quantum circuits. Drawing inspiration from classical methods, our scheduling approach incorporates additional constraints tailored for quantum logic. The outcome demonstrates a substantial improvement in fidelity and resource management, which is vital for real-world quantum applications.
量子噪声抑制:引入增强保真度和吞吐量的鲁棒量子电路调度程序
毫无疑问,量子计算为解决复杂问题提供了宝贵的加速。主要障碍之一在于在后端机器上执行大规模量子应用程序。除其他因素外,量子比特噪声极大地影响了执行过程。实现有效的量子电路调度技术对于实际的量子计算和防止过多的等待时间至关重要。量子领域在优化、性能、利用率和等待时间方面与经典计算不同。因此,量子电路调度的参数和组成与经典计算不同。本文介绍了量子噪声缓解:引入增强保真度和吞吐量的鲁棒量子电路调度程序,这是一个简单而有效的调度框架和策略,可增强量子电路的噪声弹性、吞吐量和保真度。从经典方法中汲取灵感,我们的调度方法结合了为量子逻辑量身定制的额外约束。结果表明,在保真度和资源管理方面有了实质性的改进,这对现实世界的量子应用至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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