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Physical model for the generation of ideal resources in multipartite quantum networking

机译:多部分量子网络中理想资源生成的物理模型

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We propose a physical model for generating multipartite entangled states of spin-s particles that have important applications in distributed quantum information processing. Our protocol is based on a process where mobile spins induce the interaction among remote scattering centers. As such, a major advantage lies in the management of stationary and well-separated spins. Among the generable states, there is a class of N-qubit singlets allowing for optimal quantum telecloning in a scalable and controllable way. We also show how to prepare Aharonov, W, and Greenberger-Horne-Zeilinger states.
机译:我们提出了一种用于生成自旋粒子的多部分纠缠态的物理模型,该模型在分布式量子信息处理中具有重要的应用。我们的协议基于一个过程,其中移动自旋会引起远程散射中心之间的相互作用。这样,一个主要优点在于管理固定旋转和分离良好的旋转。在可生成状态中,有一类N-量子位单峰态以可伸缩和可控的方式实现了最佳的量子遥克隆。我们还将展示如何准备Aharonov,W和Greenberger-Horne-Zeilinger州。

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