论文标题

低尺寸的几个体体棒气 - 量子动力学的实验室

Few-body Bose gases in low dimensions -- a laboratory for quantum dynamics

论文作者

Mistakidis, S. I., Volosniev, A. G., Barfknecht, R. E., Fogarty, T., Busch, Th., Foerster, A., Schmelcher, P., Zinner, N. T.

论文摘要

冷原子气体已成为探索基本物理学的范式系统,同时允许在量子技术中应用。该领域的加速发展导致了一组高级高级的工程技术,例如,可以调节相互作用,塑造外部几何形状,在具有不同特性的大型原子物种中进行选择,或者控制原子的数量。特别是,可以在较低的维度上运行,并将原子系统驱动到密切相关的状态。在这篇综述中,我们讨论了从理论观点限制在低维度的几个体型冷原子系统的最新进展。我们主要关注一个维度的骨气系统,并在回顾有关存在相关性刺激的量子动态过程的最新研究之前对静态特性进行了介绍。除了讨论这些系统中产生的基本物理现象外,我们还概述了通常使用的计算和数值工具和方法,从而提供了该领域的平衡且全面的概述。最后,我们通过对可能的未来方向进行展望,这些方向在这些相关系统中探索很有趣。

Cold atomic gases have become a paradigmatic system for exploring fundamental physics, which at the same time allows for applications in quantum technologies. The accelerating developments in the field have led to a highly advanced set of engineering techniques that, for example, can tune interactions, shape the external geometry, select among a large set of atomic species with different properties, or control the number of atoms. In particular, it is possible to operate in lower dimensions and drive atomic systems into the strongly correlated regime. In this review, we discuss recent advances in few-body cold atom systems confined in low dimensions from a theoretical viewpoint. We mainly focus on bosonic systems in one dimension and provide an introduction to the static properties before we review the state-of-the-art research into quantum dynamical processes stimulated by the presence of correlations. Besides discussing the fundamental physical phenomena arising in these systems, we also provide an overview of the calculational and numerical tools and methods that are commonly used, thus delivering a balanced and comprehensive overview of the field. We conclude by giving an outlook on possible future directions that are interesting to explore in these correlated systems.

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