Induced interactions and quench dynamics of bosonic impurities immersed in a Fermi sea

K. Mukherjee, K. Mukherjee, S. Mistakidis, S. Majumder, P. Schmelcher
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引用次数: 9

Abstract

We unravel the ground state properties and the non-equilibrium quantum dynamics of two bosonic impurities immersed in an one-dimensional fermionic environment by applying a quench of the impurity-medium interaction strength. In the ground state, the impurities and the Fermi sea are phase-separated for strong impurity-medium repulsions while they experience a localization tendency around the trap center for large attractions. We demonstrate the presence of attractive induced interactions mediated by the host for impurity-medium couplings of either sign and analyze the competition between induced and direct interactions. Following a quench to repulsive interactions triggers a breathing motion in both components, with an interaction dependent frequency and amplitude for the impurities, and a dynamical phase-separation between the impurities and their surrounding for strong repulsions. For attractive post-quench couplings a beating pattern owing its existence to the dominant role of induced interactions takes place with both components showing a localization trend around the trap center. In both quench scenarios, attractive induced correlations are manifested between non-interacting impurities and are found to dominate the direct ones only for quenches to attractive couplings.
费米海中玻色子杂质的诱导相互作用与猝灭动力学
通过对杂质-介质相互作用强度的猝灭,揭示了两种玻色子杂质在一维费米环境中的基态性质和非平衡量子动力学。在基态中,杂质和费米海在强杂质-介质斥力作用下发生相分离,而在大引力作用下,杂质和费米海在阱中心附近发生局域化。我们证明了由宿主介导的有吸引力的诱导相互作用在杂质-介质耦合中的存在,并分析了诱导相互作用和直接相互作用之间的竞争。在排斥性相互作用淬灭后,会触发两种成分的呼吸运动,杂质的频率和振幅与相互作用有关,而强排斥性则会导致杂质与其周围环境之间的动态相分离。对于有吸引力的猝灭后耦合,由于诱导相互作用的主导作用,两个组分都表现出围绕阱中心的局部化趋势。在两种猝灭情况下,非相互作用杂质之间都表现出吸引诱导相关性,并且发现只有在猝灭到吸引耦合时才主导直接相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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