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Emergent and broken symmetries of atomic self-organization arising from Gouy phase shifts in multimode cavity QED

机译:多模腔QED中粪便相移产生的原子自组织的紧急和破裂对称

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Optical cavities can induce photon-mediated interactions among intracavity-trapped atoms. Multimode cavities provide the ability to tune the form of these interactions, e.g., by inducing a nonlocal sign-changing term to the interaction. By accounting for the Gouy phase shifts of the modes in a nearly degenerate, confocal, Fabry-Pérot cavity, we provide a theoretical description of this interaction, along with additional experimental confirmation to complement that presented in the companion paper [Y. Guo et al., Phys. Rev. Lett. 122, 193601 (2019)]. Furthermore, we show that this interaction should be written in terms of a complex order parameter, allowing for a U(1) symmetry to emerge. This symmetry corresponds to the phase of the atomic density wave arising from self-organization when the cavity is transversely pumped above a critical threshold power. We show theoretically and experimentally how this phase depends on the position of the Bose-Einstein condensate within the cavity and discuss mechanisms that break the U(1) symmetry and lock this phase. We then consider alternative Fabry-Pérot multimode cavity geometries (i.e., beyond the confocal) and schemes with more than one pump laser and show that these provide additional capabilities for tuning the cavity-meditated interaction among atoms, including the ability to restore the U(1) symmetry despite the presence of symmetry-breaking effects. These photon-mediated interactions may be exploited for realizing quantum liquid crystalline states and spin glasses using multimode optical cavities.
机译:光学腔可以诱导腔内截留原子之间的光子介导的相互作用。多模腔提供能力调整这些相互作用的形式,例如,通过诱导非识别值变化术语对相互作用。通过在几乎简并的,共焦,法布里 - Pérot腔内的模式中核对模型的速度相移,我们提供了对该相互作用的理论描述,以及伴随在伴随纸上的补充的另外的实验证实[Y. guo等人。,phy。 rev. lett。 122,193601(2019)]。此外,我们表明,应以复杂的顺序参数编写此交互,允许u(1)对称性来涌现。当腔横向泵送在临界阈值高于时,该对称对应于自组织产生的原子密度波的相位。我们理论上和实验在实验上显示了该阶段如何取决于腔内的Bose-Einstein冷凝物的位置,并讨论破坏U(1)对称性并锁定该阶段的机制。然后,我们考虑替代的Fabry-Péroot多模腔几何形状(即,超越共焦)和具有多个泵激光的方案,并表明这些提供了额外的能力,用于调整原子之间的腔界面的型相互作用,包括恢复U的能力( 1)尽管存在对称性效应,但是对称性。可以利用这些光子介导的相互作用来实现使用多模光学腔的量子液晶状态和旋转玻璃。

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