论文标题
来自参数不稳定性的浮雕系统中可调节的结晶顺序的出现
Emergence of a tunable crystalline order in a Floquet-Bloch system from a parametric instability
论文作者
论文摘要
交互系统中的参数不稳定性可以导致新结构或模式的出现。在量子气体中,两体相互作用负责各种不稳定性,这些不稳定性取决于捕获和相互作用的特征。我们在玻色网冷凝物上报告了这种不稳定性的浮雕工程,以时间调制的光学晶格。调制触发了凝结物的不稳定,该状态具有新的空间周期性的密度调制。这种新的晶体状顺序直接取决于调制参数:浮雕光谱和相互作用之间的相互作用会产生狭窄且可调的不稳定性区域,从而导致密度调制的模式的增长,从量子或热波动中,非与晶格间距的密度调制。这项研究证明了通过浮雕工程产生亚稳态的物质外来状态,并为在结果阶段进行进一步研究铺平了耗散的道路,以及其他几何形状中的相似现象。
Parametric instabilities in interacting systems can lead to the appearance of new structures or patterns. In quantum gases, two-body interactions are responsible for a variety of instabilities that depend on the characteristics of both trapping and interactions. We report on the Floquet engineering of such instabilities, on a Bose-Einstein condensate held in a time-modulated optical lattice. The modulation triggers a destabilization of the condensate into a state exhibiting a density modulation with a new spatial periodicity. This new crystal-like order directly depends on the modulation parameters: the interplay between the Floquet spectrum and interactions generates narrow and adjustable instability regions, leading to the growth, from quantum or thermal fluctuations, of modes with a density modulation non commensurate with the lattice spacing. This study demonstrates the production of metastable exotic states of matter through Floquet engineering, and paves the way for further studies of dissipation in the resulting phase, and of similar phenomena in other geometries.