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Robust spin squeezing preservation in photonic crystal cavities

机译:光子晶体腔中的稳健自旋压缩保存

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We show that the robust spin squeezing preservation can be achieved by utilizing detuning modification for an ensemble of N separate two-level atoms embedded in photonic crystal cavities (PCC). In particular, we explore the different dynamical behaviors of spin squeezing between isotropic and anisotropic PCC cases when the atomic frequency is inside the band gap. In both cases, it is shown that the robust preservation of spin squeezing is completely determined by the formation of bound states. Intriguingly, we find that unlike the isotropic case where steady-state spin squeezing varies smoothly when the atomic frequency moves from the inside to the outside band edge, a sudden transition occurs for the anisotropic case. The present results may be of direct importance for, e.g. quantum metrology in open quantum systems.
机译:我们表明,可以通过对嵌入在光子晶体腔体(PCC)中的N个独立的两级原子进行解谐修饰来实现鲁棒的自旋压缩保存。特别是,我们探索了当原子频率在带隙内时,各向同性和各向异性PCC情况之间自旋压缩的不同动力学行为。在这两种情况下,都表明自旋压缩的鲁棒性完全取决于结合态的形成。有趣的是,我们发现,与各向同性的情况不同,当原子频率从内到外带边缘移动时,稳态自旋压缩平稳地变化,而各向异性的情况则发生突然转变。目前的结果可能对例如开放量子系统中的量子计量。

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