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Ballistic motion of a tracer particle coupled to a Bose gas

机译:示踪粒子与Bose气体的弹道运动

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摘要

We study the motion of a heavy tracer particle weakly coupled to a dense interacting Bose gas exhibiting Bose- Einstein condensation. In the so-called mean-field limit, the dynamics of this system approaches one determined by nonlinear Hamiltonian evolution equations. We derive the effective dynamics of the tracer particle, which is described by a non-linear integro-differential equation with memory, and prove that if the initial speed of the tracer particle is below the speed of sound in the Bose gas the motion of the particle approaches an inertial motion at constant velocity at large times.
机译:我们研究了重示踪剂颗粒的运动,该运动与显示Bose-Einstein凝聚的稠密相互作用的Bose气体弱耦合。在所谓的平均场极限中,该系统的动力学趋近于由非线性哈密顿演化方程确定的动力学。我们导出示踪剂粒子的有效动力学,并用带有记忆的非线性积分微分方程来描述,并证明如果示踪剂粒子的初始速度低于玻色气体中的声速,则示踪剂的运动粒子以恒定速度大幅度地接近惯性运动。

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