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Robust quantum entanglement generation and generation-plus-storage protocols with spin chains

机译:具有旋转链的强大量子纠缠生成和生成加存储协议

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Reliable quantum communication and/or processing links between modules are a necessary building block for various quantum processing architectures. Here we consider a spin-chain system with alternating strength couplings and containing three defects, which impose three domainwalls between topologically distinct regions of the chain.We show that—in addition to its useful, high-fidelity, quantum state transfer properties—an entangling protocol can be implemented in this system, with optional localization and storage of the entangled states. We demonstrate both numerically and analytically that, given a suitable initial product-state injection, the natural dynamics of the system produces a maximally entangled state at a given time.We present detailed investigations of the effects of fabrication errors, analyzing random static disorder both in the diagonal and off-diagonal terms of the system Hamiltonian. Our results show that the entangled state formation is very robust against perturbations of up to ~ 10% the weaker chain coupling, and also robust against timing injection errors. We propose a further protocol, which manipulates the chain in order to localize and store each of the entangled qubits. The engineering of a system with such characteristics would thus provide a useful device for quantum information processing tasks involving the creation and storage of entangled resources.
机译:模块之间的可靠量子通信和/或处理的链接可用于各种量子处理架构的一个必要组成部分。在这里,我们考虑一个自旋链系统具有交替的强度联轴器和含有三个缺陷,这强加的chain.We显示拓扑不同的区域之间的三个domainwalls该-除了其是有用的,高保真,量子状态传输属性-缠结协议可以在该系统中实现,与纠缠态的可选定位和存储。我们证明以数字和分析,给定一个合适的初始产品状态喷射,该系统的自然动态在给定的时间。我们目前生产最大纠缠态的制造误差的影响详细的调查,分析随机静态紊乱都在该系统哈密顿的对角线和非对角线项。我们的结果表明,该纠缠态的形成是针对高达〜10%较弱链耦合的扰动非常健壮,并且还具备应对定时喷射错误。我们提出了进一步的协议,它操纵链以便定位和存储每个缠结量子位。因此系统的具有这种特性的工程将用于涉及缠结资源的创建和存储量子信息处理任务的有用装置。

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