论文标题

量子自旋网络的统一设计,用于稳健路由,纠缠产生和相传感

Unitary Design of Quantum Spin Networks for Robust Routing, Entanglement Generation, and Phase Sensing

论文作者

Alsulami, Abdulsalam H., D'Amico, Irene, Estarellas, Marta P., Spiller, Timothy P.

论文摘要

旋转链可用于描述用于量子计算和量子信息的广泛平台。它们可以对众多有用现象的理解,演示和建模,例如量子状态的高保真度转移,纠缠的创建和分布以及为基于测量的量子处理创造资源。在本文中,研究了一个更复杂的旋转系统,即通过将合适的单位型在两个未耦合的自旋链中应用的2D自旋网络(SN)。仅考虑SN的单启示子空间,可以证明该系统可以作为路由器操作,并通过SN指导信息。还表明它可以用于在两个站点之间生成最大纠缠的状态。此外,可以说明该SN系统可以用作能够确定应用于系统旋转的未知阶段的传感器设备。对系统中静态疾病的影响的详细建模研究表明,该系统对不同类型的疾病具有鲁棒性。

Spin chains can be used to describe a wide range of platforms for quantum computation and quantum information. They enable the understanding, demonstration, and modeling of numerous useful phenomena, such as high fidelity transfer of quantum states, creation and distribution of entanglement, and creation of resources for measurement-based quantum processing. In this paper, a more complex spin system, a 2D spin network (SN) engineered by applying suitable unitaries to two uncoupled spin chains, is studied. Considering only the single-excitation subspace of the SN, it is demonstrated that the system can be operated as a router, directing information through the SN. It is also shown that it can serve to generate maximally entangled states between two sites. Furthermore, it is illustrated that this SN system can be used as a sensor device able to determine an unknown phase applied to a system spin. A detailed modeling investigation of the effects of static disorder in the system shows that this system is robust against different types of disorder.

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