超冷玻色气体中余弦波的超固体性

G. I. Martone, A. Recati, N. Pavloff
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引用次数: 9

摘要

一维玻色-爱因斯坦凝聚体可能经历称为“余弦波”的非线性周期调制。我们认为,这种结构代表了在非平衡状态下研究超固体相关现象的有希望的候选者。平均场处理可以重新推导系统超流体部分的莱格特公式,并对其进行解析估计。我们确定了激发谱,在(i)线性调制背景和(ii)一列暗孤子的两种相反的极限情况下,我们得到了激发谱的分析结果。验证了两个Goldstone(无间隙)模式的存在-与$\ mathm {U}(1)$对称性的自发破缺和连续平移不变性有关-在大波长。我们还计算了在每个布里渊区边缘呈现发散行为的余弦波的静力结构因子和可压缩性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Supersolidity of cnoidal waves in an ultracold Bose gas
A one-dimensional Bose-Einstein condensate may experience nonlinear periodic modulations known as ``cnoidal waves''. We argue that such structures represent promising candidates for the study of supersolidity-related phenomena in a non-equilibrium state. A mean-field treatment makes it possible to rederive Leggett's formula for the superfluid fraction of the system and to estimate it analytically. We determine the excitation spectrum, for which we obtain analytical results in the two opposite limiting cases of (i) a linearly modulated background and (ii) a train of dark solitons. The presence of two Goldstone (gapless) modes -- associated with the spontaneous breaking of $\mathrm{U}(1)$ symmetry and of continuous translational invariance -- at large wavelength is verified. We also calculate the static structure factor and the compressibility of cnoidal waves, which show a divergent behavior at the edges of each Brillouin zone.
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