论文标题

偶极腔量子电动力学的真空

The Vacua of Dipolar Cavity Quantum Electrodynamics

论文作者

Schuler, Michael, De Bernardis, Daniele, Läuchli, Andreas M., Rabl, Peter

论文摘要

固体及其相的结构主要由静态库仑力确定,而电荷与动力学(即电磁场的量化自由度)的耦合仅起次要作用。最近,已经猜测,可以在腔量子电动力学(QED)的背景下克服该一般规则,其中偶极子与单场模式的耦合可以显着增强。在这里,我们对非扰动耦合方案中的偶极腔QED系统的基态进行了首次精确分析,其中静电和动态相互作用起着同样重要的作用。具体而言,我们展示了强和远程真空波动如何改变偶极物质状态,并诱导具有异常特性的新相。除了纯粹的基本兴趣之外,这些一般机制对于潜在应用可能很重要,从腔体辅助化学到基于超耦合电路QED系统的量子技术。

The structure of solids and their phases is mainly determined by static Coulomb forces while the coupling of charges to the dynamical, i.e., quantized degrees of freedom of the electromagnetic field plays only a secondary role. Recently, it has been speculated that this general rule can be overcome in the context of cavity quantum electrodynamics (QED), where the coupling of dipoles to a single field mode can be dramatically enhanced. Here we present a first exact analysis of the ground states of a dipolar cavity QED system in the non-perturbative coupling regime, where electrostatic and dynamical interactions play an equally important role. Specifically, we show how strong and long-range vacuum fluctuations modify the states of dipolar matter and induce novel phases with unusual properties. Beyond a purely fundamental interest, these general mechanisms can be important for potential applications, ranging from cavity-assisted chemistry to quantum technologies based on ultrastrongly coupled circuit QED systems.

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