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Non-equilibrium phases in hybrid flux-qubit--NV-center arrays

zqyin 添加于 2012-3-9 09:39 | 1636 次阅读 | 0 个评论
  •  作 者

    Hümmer T, Reuther GM, Hänggi P, Zueco D
  •  摘 要

    We propose a startling hybrid quantum architecture for simulating a localization-delocalization transition. The concept is based on an array of superconducting flux qubits which are coupled to a diamond crystal containing nitrogen-vacancy (NV) centers. The underlying description is a Jaynes-Cummings-lattice in the strong-coupling regime. However, in contrast to well-studied coupled cavity arrays the interaction between lattice sites is mediated here by the qubit rather than by the oscillator degrees of freedom. Nevertheless, we point out that a transition between a localized and a delocalized phase occurs in this system as well. We demonstrate the possibility of monitoring this transition in a non-equilibrium scenario, including decoherence effects. The proposed scheme allows the monitoring of localization-delocalization transitions in Jaynes-Cummings-lattices by use of currently available experimental technology. Contrary to cavity-coupled lattices, our proposed recourse to stylized qubit networks facilitates (i) to investigate localization-delocalization transitions in arbitrary dimensions and (ii) to tune the inter-site coupling in-situ.
  •  详细资料

    • 关键词: quant-ph
    • 文献种类: Manual Script
    • 期卷页: 2012
    • 日期: 2012-3-9
    • 发布方式: arXiv e-prints
    • 备注:arXiv:1203.1857v1
  • 学科领域 自然科学 » 物理学

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