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Non-equilibrium thermodynamics of harmonically trapped bosons

机译:谐波俘获玻色子的非平衡热力学

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We apply the framework of non-equilibrium quantum thermodynamics to the physics of quenched small-sized bosonic quantum gases in a one-dimensional harmonic trap. We show that dynamical orthogonality can occur in these few-body systems with strong interactions after a quench and we find its occurrence analytically for an infinitely repulsive pair of atoms. We further show this phenomena is related to the fundamental excitations that dictate the dynamics from the spectral function. We establish a clear qualitative link between the amount of (irreversible) work performed on the system and the establishment of entanglement. We extend our analysis to multipartite systems by examining the case of three trapped atoms. We show the initial (pre-quench) interactions play a vital role in determining the dynamical features, while the qualitative features of the two particle case appear to remain valid. Finally, we propose the use of the atomic density profile as a readily accessible indicator of the non-equilibrium properties of the systems in question.
机译:我们将非平衡量子热力学的框架应用于一维谐波阱中淬灭的小型玻色子量子气体的物理学。我们表明,动力学正交性可以在淬灭后在具有强相互作用的这些小体系统中发生,并且我们发现它在无限排斥原子对的分析中发现。我们进一步表明,这种现象与基本激励有关,基本激励决定了频谱函数的动力学。我们在系统上执行的(不可逆)工作量与纠缠的建立之间建立了明确的质量联系。通过检查三个被困原子的情况,我们将分析扩展到多部分系统。我们显示出初始(猝灭前)相互作用在确定动力学特征方面起着至关重要的作用,而两个粒子情况的定性特征似乎仍然有效。最后,我们建议使用原子密度分布图作为有关系统非平衡特性的易于访问的指标。

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