论文标题

光学晶格中骨气双龙的相干和耗散动力学之间的相互作用

Interplay between coherent and dissipative dynamics of bosonic doublons in an optical lattice

论文作者

Mark, M. J., Flannigan, S., Meinert, F., Jag-Lauber, K., D'Incao, J. P., Daley, A. J., Nägerl, H. -C.

论文摘要

我们观察到光学晶格中骨气原子对的致密性,强烈相互作用的气体的耗散动力学,从而控制了两体相互作用在广泛的参数方面的强度。我们研究三体损失如何促进晶格动力学,解决与多体系统中强耗散的影响有关的许多开放问题,包括与连续的量子Zeno效应的关系。我们观察到弱相互作用的结合对的快速分解,对于更强的相互作用,我们看到Doublon衰减速率在有吸引力和排斥性相互作用发生变化时是不对称的,并且在很大程度上取决于相互作用和现场损失率。通过将我们的实验数据与几个体型动力学的理论分析进行比较,我们表明,这些特征源于超出标准的Bose-Hubbard Hamiltonian的晶格模型所描述的耗散动力学的非平凡组合,以及在单个位点上修改三原子动力学的单个站点,这是在强大的三体损失中生成的。我们的结果为研究具有强大三体损失特征的骨气原子开辟了新的可能性,并可以更好地了解实现强大有效的三体相互作用所需的参数制度。

We observe the dissipative dynamics of a dense, strongly interacting gas of bosonic atom pairs in an optical lattice, controlling the strength of the two-body interactions over a wide parameter regime. We study how three-body losses contribute to the lattice dynamics, addressing a number of open questions related to the effects of strong dissipation in a many-body system, including the relationship to the continuous quantum Zeno effect. We observe rapid break-up of bound pairs for weak interactions, and for stronger interactions we see doublon decay rates that are asymmetric when changing from attractive and repulsive interactions, and which strongly depend on the interactions and on-site loss rates. By comparing our experimental data with a theoretical analysis of few-body dynamics, we show that these features originate from a non-trivial combination of dissipative dynamics described by a lattice model beyond a standard Bose-Hubbard Hamiltonian, and the modification of three-atom dynamics on a single site, which is generated alongside strong three-body loss. Our results open new possibilities for investigating bosonic atoms with strong three-body loss features, and allow for the better understanding of the parameter regimes that are required to realize strong effective three-body interactions.

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