论文标题

量子网络中基本链接的政策

Policies for elementary links in a quantum network

论文作者

Khatri, Sumeet

论文摘要

长距离分配纠缠是量子网络中的核心任务之一。一个重要的问题,尤其是对于近期量子网络,是开发最佳的纠缠分布协议,以考虑当前和近期硬件的局限性,例如相干时间有限的量子记忆。我们通过使用决策过程的理论启动量子网络协议来解决该问题,以便可以使用动态编程或增强学习算法找到最佳协议(在决策过程中称为策略)。作为第一步,在这项工作中,我们专注于基本链接级别。我们首先定义基本链接的量子决策过程,以及评估策略的功绩数字。然后,我们提供了确定策略的两种算法,在所有策略中,我们被证明是最佳的(对于保真度和成功概率)。然后,我们表明,在我们的决策过程框架内可以将以前研究过的内存切割协议作为策略,从而使我们能够获得几个新的基本结果。这项工作的概念发展和结果为对近期量子网络的基本局限性的系统研究和物理实现的要求铺平了道路。

Distributing entanglement over long distances is one of the central tasks in quantum networks. An important problem, especially for near-term quantum networks, is to develop optimal entanglement distribution protocols that take into account the limitations of current and near-term hardware, such as quantum memories with limited coherence time. We address this problem by initiating the study of quantum network protocols for entanglement distribution using the theory of decision processes, such that optimal protocols (referred to as policies in the context of decision processes) can be found using dynamic programming or reinforcement learning algorithms. As a first step, in this work we focus exclusively on the elementary link level. We start by defining a quantum decision process for elementary links, along with figures of merit for evaluating policies. We then provide two algorithms for determining policies, one of which we prove to be optimal (with respect to fidelity and success probability) among all policies. Then we show that the previously-studied memory-cutoff protocol can be phrased as a policy within our decision process framework, allowing us to obtain several new fundamental results about it. The conceptual developments and results of this work pave the way for the systematic study of the fundamental limitations of near-term quantum networks, and the requirements for physically realizing them.

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