论文标题
Requsim:忠实模拟近期量子中继器
ReQuSim: Faithfully simulating near-term quantum repeaters
论文作者
论文摘要
长期以来,量子中继器已被确定为在长距离上分配纠缠至关重要。因此,他们的实验实现构成了量子通信的核心挑战。但是,关于现实,近期实验设置的实施细节有许多开放问题。为了评估现实的中继器协议的性能,我们在这里介绍了Requsim,这是一个全面的基于蒙特卡洛的仿真平台,用于量子中继器,忠实地包括损失和模型多种缺陷,例如与时间相关噪声的记忆。我们的平台使我们能够对量子中继器设置和策略进行分析,这些设置和策略远远超出了已知的分析结果:这是指能够捕获更现实的噪声模型并分析更复杂的中继器策略。我们提出了许多发现,围绕改善性能的策略的组合,例如纠缠净化和使用多个中继器站,并证明它们之间存在复杂的关系。我们强调,诸如我们的数值工具对于建模旨在为量子互联网做出贡献的复杂量子通信协议至关重要。
Quantum repeaters have long been established to be essential for distributing entanglement over long distances. Consequently, their experimental realization constitutes a core challenge of quantum communication. However, there are numerous open questions about implementation details for realistic, near-term experimental setups. In order to assess the performance of realistic repeater protocols, we here present ReQuSim, a comprehensive Monte-Carlo based simulation platform for quantum repeaters that faithfully includes loss and models a wide range of imperfections such as memories with time-dependent noise. Our platform allows us to perform an analysis for quantum repeater setups and strategies that go far beyond known analytic results: This refers to being able to both capture more realistic noise models and analyse more complex repeater strategies. We present a number of findings centered around the combination of strategies for improving performance, such as entanglement purification and the use of multiple repeater stations, and demonstrate that there exist complex relationships between them. We stress that numerical tools such as ours are essential to model complex quantum communication protocols aimed at contributing to the quantum internet.