论文标题

连续变量量子开关

A Continuous Variable Quantum Switch

论文作者

Tillman, Ian, Vasantam, Thirupathaiah, Seshadreesan, Kaushik P.

论文摘要

光场单个模式的连续四倍构成了一个有希望的量子途径。由于相关的希尔伯特空间的无限维度,这些连续变量(CV)的量子状态与单个基于光子的Qubit编码相比,可以实现更高的通信速率。最近,对于CV量子编码,最近还提出了量子中继器协议,这些方案对于以增强的速率扩展量子通信范围是提高速率的范围。在这里,我们提出了CV量子编码的量子重复开关,该开关符合多个通信流。交换机的体系结构基于量子光源,检测器,记忆和交换结构,路由协议基于最佳吞吐量的最大关键调度策略。我们为可实现的二分纠缠率率区域提供了数值结果,用于多个CV纠缠流,这些纠缠流可以通过交换机稳定支持。我们借助示例性的3流网络来阐明我们的结果。

The continuous quadratures of a single mode of the light field present a promising avenue to encode quantum information. By virtue of the infinite dimensionality of the associated Hilbert space, quantum states of these continuous variables (CV) can enable higher communication rates compared to single photon-based qubit encodings. Quantum repeater protocols that are essential to extend the range of quantum communications at enhanced rates over direct transmission have also been recently proposed for CV quantum encodings. Here we present a quantum repeating switch for CV quantum encodings that caters to multiple communication flows. The architecture of the switch is based on quantum light sources, detectors, memories, and switching fabric, and the routing protocol is based on a Max-Weight scheduling policy that is throughput optimal. We present numerical results on an achievable bipartite entanglement request rate region for multiple CV entanglement flows that can be stably supported through the switch. We elucidate our results with the help of exemplary 3-flow networks.

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