光学晶格
物理
凝聚态物理
激发
格子(音乐)
过剩
弗洛奎特理论
声子
布洛赫振荡
量子
一维晶格中的粒子
量子动力学
可见的
不稳定性
量子力学
互易晶格
衍射
超晶格
声学
非线性系统
作者
Yuhang Nie,Jun-Hui Zheng,Tao Yang
标识
DOI:10.1103/physreva.108.053310
摘要
The optical lattice plays an important role in the stability and dynamics of quantum droplets. In this article, we investigate the Bogoliubov excitation spectrum of quantum droplets in an optical lattice in the thermodynamic limit. We classify the collective excitations as synchronous modes, Bloch phononic modes, and site-population-imbalanced modes. For synchronous modes, we measure the dipole oscillation frequencies by quench dynamics with a sudden shift of the optical lattice and the breathing frequencies by Floquet dynamics with a periodic change of the lattice depth. Bloch phononic modes are observable from the Landau critical velocity of the droplets. We further discuss the instability induced by site-dependent density fluctuations and calculate the critical filling of atoms where the growth of lattice vacancy breaks down the translational symmetry of the system. This work makes essential steps towards measuring the excitation spectrum and understanding the superfluid nature of quantum droplets in an optical lattice.
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