Quantum networking relies on the management and exploitation of entanglement. Practical sources of entangled qubits are imperfect, producing mixed quantum state with reduced fidelity with respect to ideal Bell pairs. Therefore, an important primitive for quantum networking is entanglement distillation, whose goal is to enhance the fidelity of entangled qubits through local operations and classical communication (LOCC). Existing distillation protocols assume the availability of ideal, noiseless, communication channels. In this paper, we study the case in which communication takes place over noisy binary symmetric channels. We propose to implement local processing through parameterized quantum circuits (PQCs) that are optimized to maximize the average fidelity, while accounting for communication errors. The introduced approach, Noise Aware-LOCCNet (NA-LOCCNet), is shown to have significant advantages over existing protocols designed for noiseless communications.
翻译:量子网络取决于缠绕的管理和利用。 缠绕的 ⁇ 的实际来源不完善, 产生混合量子状态, 降低理想的贝尔对子的忠诚度。 因此, 量子网络的一个重要原始点是缠绕式蒸馏, 目的是通过本地操作和古典通信( LOCC) 来提高缠绕的 ⁇ 的忠诚性。 现有的蒸馏协议假定有理想的、 无噪音的沟通渠道。 在本文中, 我们研究了通信在吵闹的双对称频道上发生的案例。 我们提议通过参数化量子电路( PQCs) 进行本地处理, 优化这些电路可以最大限度地实现平均的忠诚性, 同时计算通信错误。 引入的方法“ Noise Invecure- LOCCNet (NA- LOCCNet), 与为无噪音通信设计的现有协议相比, 具有显著的优势 。