论文标题

具有光子介导相互作用的两个组分晶格模型中的相位,不稳定性和激发

Phases, instabilities and excitations in a two-component lattice model with photon-mediated interactions

论文作者

Carl, Leon, Rosa-Medina, Rodrigo, Huber, Sebastian D., Esslinger, Tilman, Dogra, Nishant, Dubcek, Tena

论文摘要

与超冷原子的工程长距离相互作用的自旋系统提供了在强烈相关的场景中探索异国情调的有序相的可能性。光腔中的量子气提供了一个多功能的实验平台,以进一步设计光子介导的相互作用,并通过探测腔场访问基础显微镜过程。在这里,我们研究了具有空腔介导的相互作用的两个组成型自旋式玻色胶系统。我们全面概述了其相位图和实验相关制度中的过渡。不同能量尺度的相互作用产生了丰富的相图,并具有超流体和绝缘相,表现出密度调制或旋转顺序。特别是,接触和全球相互作用的综合效应导致了对任意小的自旋依赖性光 - 耦合的抗铁磁有序相,而远距离和间旋转触点相互作用引入了相图中的不稳定性和相位分离的区域。我们进一步研究了抗铁磁相上方的低能量激发。除了粒子孔分支外,它还具有具有可调能隙的自旋交换激发。研究的晶格模型可以很容易地在光腔的冷原子实验中实现。

Engineering long-range interacting spin systems with ultra cold atoms offers the possibility to explore exotic magnetically ordered phases in strongly-correlated scenarios. Quantum gases in optical cavities provide a versatile experimental platform to further engineer photon-mediated interactions and access the underlying microscopic processes by probing the cavity field. Here, we study a two-component spin Bose-Hubbard system with cavity-mediated interactions. We provide a comprehensive overview of its phase diagram and transitions in experimentally relevant regimes. The interplay of different energy scales yields a rich phase diagram with superfluid and insulating phases exhibiting density modulation or spin ordering. In particular, the combined effect of contact and global-range interactions gives rise to an antiferromagnetically ordered phase for arbitrarily small spin-dependent light-matter coupling, while long-range and inter-spin contact interactions introduce regions of instability and phase separation in the phase diagram. We further study the low energy excitations above the antiferrogmagnetic phase. Besides particle-hole branches, it hosts spin-exchange excitations with a tunable energy gap. The studied lattice model can be readily realized in cold-atom experiments with optical cavities.

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