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二维周期驱动玻色子系统中的参数加热:超越弱相互作用 regime。 (注:这里“regime”可根据具体语境选择更合适的表述,比如“ regime”可译为“ regime”“状态”“ regime”等 )

Parametric heating in a 2D periodically-driven bosonic system: Beyond the weakly-interacting regime.

作者信息

Boulier T, Maslek J, Bukov M, Bracamontes C, Magnan E, Lellouch S, Demler E, Goldman N, Porto J V

机构信息

Joint Quantum Institute, National Institute of Standards and Technology and the University of Maryland, College Park, Maryland 20742 USA.

Laboratoire Charles Fabry, Institut dOptique Graduate School, CNRS, Université Paris-Saclay, 91127 Palaiseau cedex, France.

出版信息

Phys Rev X. 2019;9(1). doi: 10.1103/physrevx.9.011047.

Abstract

We experimentally investigate the effects of parametric instabilities on the short-time heating process of periodically-driven bosons in 2D optical lattices with a continuous transverse (tube) degree of freedom. We analyze three types of periodic drives: (i) linear along the -lattice direction only, (ii) linear along the lattice diagonal, and (iii) circular in the lattice plane. In all cases, we demonstrate that the BEC decay is dominated by the emergence of unstable Bogoliubov modes, rather than scattering in higher Floquet bands, in agreement with recent theoretical predictions. The observed BEC depletion rates are much higher when shaking both along and directions, as opposed to only or only . We also report an explosion of the decay rates at large drive amplitudes, and suggest a phenomenological description beyond Bogoliubov theory. In this strongly-coupled regime, circular drives heat faster than diagonal drives, which illustrates the non-trivial dependence of the heating on the choice of drive.

摘要

我们通过实验研究了参数不稳定性对具有连续横向(管状)自由度的二维光学晶格中周期性驱动玻色子短时间加热过程的影响。我们分析了三种类型的周期性驱动:(i)仅沿晶格方向呈线性,(ii)沿晶格对角线呈线性,以及(iii)在晶格平面内呈圆形。在所有情况下,我们都证明了玻色 - 爱因斯坦凝聚(BEC)的衰减主要由不稳定的博戈留波夫模式的出现主导,而不是高阶弗洛凯能带中的散射,这与最近的理论预测一致。与仅沿一个方向或仅沿另一个方向摇动相比,当同时沿两个方向摇动时,观察到的玻色 - 爱因斯坦凝聚耗尽率要高得多。我们还报告了在大驱动振幅下衰减率的激增,并提出了一种超越博戈留波夫理论的唯象描述。在这种强耦合 regime 中,圆形驱动比对角线驱动加热更快,这说明了加热对驱动选择的非平凡依赖性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa53/7047775/5f77eae79341/nihms-1541703-f0001.jpg

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