论文标题

在多模光腔中1D气体的光子介导的PEIERLS过渡

Photon-mediated Peierls Transition of a 1D Gas in a Multimode Optical Cavity

论文作者

Rylands, Colin, Guo, Yudan, Lev, Benjamin L., Keeling, Jonathan, Galitski, Victor

论文摘要

PEIERLS向电荷密度波的不稳定性是声子驱动的强度相关物理的典型示例,并且与拓扑量子物质和异国情调的超导性密切相关。我们提出了一种使用一种相互作用的玻色或费米原子的一维管系统的系统来实现类似的光子介导的PEIERLS转变。在横向工程中泵送腔体介导的金属介导的金属 - 原子系统中的绝缘体过渡。对于在Tonks-Girardeau限制中强烈相互作用的玻色子,可以将这种过渡理解为Peierls的不稳定性。我们将计算扩展到相互作用强度的有限值,并为腔场和质量间隙提供分析表达式。他们表现出对无量纲物质耦合的非平凡幂定律的依赖。

The Peierls instability toward a charge density wave is a canonical example of phonon-driven strongly correlated physics and is intimately related to topological quantum matter and exotic superconductivity. We propose a method to realize an analogous photon-mediated Peierls transition, using a system of one-dimensional tubes of interacting Bose or Fermi atoms trapped inside a multimode confocal cavity. Pumping the cavity transversely engineers a cavity-mediated metal--to--insulator transition in the atomic system. For strongly interacting bosons in the Tonks-Girardeau limit, this transition can be understood (through fermionization) as being the Peierls instability. We extend the calculation to finite values of the interaction strength and derive analytic expressions for both the cavity field and mass gap. They display nontrivial power law dependence on the dimensionless matter-light coupling.

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