论文标题

部分可观测时空混沌系统的无模型预测

Tripartite high-dimensional magnon-photon entanglement in PT -symmetry broken phases of a non-Hermitian hybrid system

论文作者

Han, Jin-Xuan, Wang, Jin-Lei Wu1and Yan, Xia, Yan, Jiang, Yong-Yuan, Song, and Jie

论文摘要

结合旋转合奏和超导电路的混合系统为实施量子信息处理提供了有前途的平台。我们提出了一个非热元元号的Qued杂种模型,该模型由两个腔和一个放在其中一个腔中的Yttrium铁石榴石(YIG)球体组成。在参数空间中研究了丰富的特殊点(EPS),平价(PT) - 对称阶段和PT-对称阶段。可以在Pt -Ammortry损坏相中的磁体和光子模式之间稳步生成三方高度纠缠状态,这对应于稳定的量子相干性。结果表明,三分线高维纠缠状态对杂种系统的耗散(独立于特定初始状态,并且对磁杆耦合的波动不敏感)具有鲁棒性。此外,我们建议使用等效LCR电路模拟混合模型。这项工作可能会为实现磁石 - QED混合系统中的多部分高维纠缠状态提供前景。

Hybrid systems that combine spin ensembles and superconducting circuits provide a promising platform for implementing quantum information processing. We propose a non-Hermitian magnoncircuit-QED hybrid model consisting of two cavities and an yttrium iron garnet (YIG) sphere placed in one of the cavities. Abundant exceptional points (EPs), parity-time (PT )-symmetry phases and PT -symmetry broken phases are investigated in the parameter space. Tripartite highdimensional entangled states can be generated steadily among modes of the magnon and photons in PT -symmetry broken phases, corresponding to which the stable quantum coherence exists. Results show that the tripartite high-dimensional entangled state is robust against the dissipation of hybrid system, independent of a certain initial state, and insensitive to the fluctuation of magnonphoton coupling. Further, we propose to simulate the hybrid model with an equivalent LCR circuit. This work may provide prospects for realizing multipartite high-dimensional entangled states in the magnon-circuit-QED hybrid system.

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