论文标题

腔诱导的集体行为在极化基态

Cavity Induced Collective Behavior in the Polaritonic Ground State

论文作者

Rokaj, V., Mistakidis, S. I., Sadeghpour, H. R.

论文摘要

空腔量子电动力学为设计和控制光 - 二聚体的相互作用提供了理想的平台。在这项工作中,我们研究了与均匀量子腔场相连的谐波陷阱中许多粒子系统中的集体现象。系统伴侣通过其质量中心集体到达腔场,集体极化状态出现。腔场介导成对的长距离相互作用并增强颗粒的有效质量。这导致在物质基态密度中的定位增强,当光和物质在共振上时具有最大值,并以粒子数表现出类似dicke的集体行为。由于基态填充了堆积的光子,因此光 - 物质相互作用还会改变极化系统的光子特性。此外,可以表明,对于系统的稳定性,必须使用diamagnetic $ \ mathbf {a}^2 $项,否则会发生超级基础状态不稳定性。我们证明了极性人群的相干转移与外部磁场是可能的,并通过监视Landau-Zener转变概率。

Cavity quantum electrodynamics provides an ideal platform to engineer and control light-matter interactions with polariton quasiparticles. In this work, we investigate collective phenomena in a system of many particles in a harmonic trap coupled to a homogeneous quantum cavity field. The system couples collectively to the cavity field, through its center of mass, and collective polariton states emerge. The cavity field mediates pairwise long-range interactions and enhances the effective mass of the particles. This leads to an enhancement of localization in the matter ground state density, which features a maximum when light and matter are on resonance, and demonstrates a Dicke-like, collective behavior with the particle number. The light-matter interaction also modifies the photonic properties of the polariton system, as the ground state is populated with bunched photons. In addition, it is shown that the diamagnetic $\mathbf{A}^2$ term is necessary for the stability of the system, as otherwise the superradiant ground state instability occurs. We demonstrate that coherent transfer of polaritonic population is possbile with an external magnetic field and by monitoring the Landau-Zener transition probability.

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