Instituut-Lorentz, Universiteit Leiden, P.O. Box 9506, Leiden 2300 RA, Netherlands.
Bogolyubov Institute for Theoretical Physics, 14-b Metrolohichna street, Kyiv 03680, Ukraine.
Phys Rev Lett. 2018 Jun 1;120(22):220605. doi: 10.1103/PhysRevLett.120.220605.
We examine stationary-state properties of an impurity particle injected into a one-dimensional quantum gas. We show that the value of the impurity's end velocity lies between zero and the speed of sound in the gas and is determined by the injection protocol. This way, the impurity's constant motion is a dynamically emergent phenomenon whose description goes beyond accounting for the kinematic constraints of the Landau approach to superfluidity. We provide exact analytic results in the thermodynamic limit and perform finite-size numerical simulations to demonstrate that the predicted phenomena are within the reach of the ultracold gas experiments.
我们研究了注入一维量子气体的杂质粒子的稳态性质。我们表明,杂质的末端速度值介于零和气体中的声速之间,并且由注入方案决定。这样,杂质的恒定运动是一种动态涌现的现象,其描述超出了对超流的朗道方法的运动学约束的解释。我们在热力学极限下提供了精确的解析结果,并进行了有限尺寸的数值模拟,以证明预测的现象在超冷气体实验的范围内。