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Quantum mixed phases of a two-dimensional polarized degenerate Fermi gas in an optical cavity

机译:二维偏振简并费米气体在光腔中的量子混合相

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摘要

The coupling of ultracold fermions to a high-finesse optical cavity can result in novel many-body phenomena, and has attracted significant interests at present. Here we consider a realization of the Fermi-Dicke model with controllable parameters, based on a two-dimensional polarized degenerate Fermi gas coupled to an optical cavity. We analytically investigate the ground-state properties of such system under the mean-field approximation. We find the system can exhibit a rich phase diagram depending on the fermion-photon coupling strength and the atomic resonant frequency. Contrasting to the bosonic counterpart, a first-order quantum phase transition between the superradiant phase and the normal phase featuring two Fermi surfaces can occur for the weak atomic resonant frequency, and there is a unique mixed phase where this normal phase and the superradiant phase coexist. The experimental detection of our results is also discussed.
机译:超冷费米子与高精细光学腔的耦合可以产生新颖的多体现象,并且目前引起了广泛的兴趣。在这里,我们考虑了基于耦合到光学腔的二维极化简并费米气体的参数可控的费米-迪克模型的实现。我们在平均场近似下分析研究了这种系统的基态性质。我们发现,根据费米子-光子的耦合强度和原子共振频率,系统可以显示出丰富的相图。与玻色子相反,由于弱的原子共振频率,在超辐射相和具有两个费米表面的正相之间会发生一阶量子相变,并且存在一个独特的混合相,该正相和超辐射相共存。还讨论了实验结果的实验​​检测。

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