The primary task of a quantum repeater network is to deliver entanglement among end nodes. Most of existing entanglement distribution protocols do not consider purification, which is thus delegated to an upper layer. This is a major drawback since, once an end-to-end entangled connection (or a portion thereof) is established it cannot be purified if its fidelity (F) does not fall within an interval bounded by Fmin (greater than 0.5) and Fmax (less than 1). In this paper, we propose the Ranked Entanglement Distribution Protocol (REDiP), a connection-oriented protocol that overcomes the above drawback. This result was achieved by including in our protocol two mechanisms for carrying out jointly purification and entanglement swapping. We use simulations to investigate the impact of these mechanisms on the performance of a repeater network, in terms of throughput and fidelity. Moreover, we show how REDiP can easily be configured to implement custom entanglement swapping and purification strategies, including (but not restricted to) those adopted in two recent works.
翻译:量子中继器网络的首要任务是在终端节点之间传递纠缠。 大部分现有的纠缠分配协议不考虑净化, 从而将净化下放到上层。 这是一项重大缺陷, 因为一旦端到端缠绕连接( 或其中的一部分) 建立起来, 如果它的忠诚性( F) 不在Fmin( 大于0. 5) 和 Fmax( 低于 1) 的间隔内, 则无法净化 。 在本文件中, 我们提议了 排位分错开分配协议( REDIP), 这是一种面向连接的协议, 克服了上述缺陷。 这个结果是通过在我们的协议中列入两个机制来联合进行净化和缠绕互换实现的。 我们使用模拟来调查这些机制对中继器网络性能的影响, 包括吞吐量和忠诚性。 此外, 我们展示了RDipP 如何容易被配置来实施自定义纠结和净化战略, 包括( 但不限于) 最近两项工程中采用的机制。