论文标题

空间限制的自旋轨道耦合的玻色子凝结物中的非线性模式与排斥非线性

Nonlinear modes in spatially confined spin-orbit-coupled Bose-Einstein condensates with repulsive nonlinearity

论文作者

Chen, Xiong-wei, Deng, Zhi-gui, Xu, Xiao-xi, Li, Shu-lan, Fan, Zhi-wei, Chen, Zhao-pin, Liu, Bin, Li, Yong-yao

论文摘要

已经发现,可以通过高斯激光束照亮玻色 - 仁冷凝水(BEC)来诱导的空间限制自旋轨道(SO)耦合,可以帮助将纺纱棒气体捕获到多维空间中。关于此主题的先前作品都是基于具有吸引人的互动的玻色子气。在本文中,我们考虑了玻色子气具有排斥相互作用的情况下的捕获效果。替换了排斥效应后,在当前设置中可以找到半涡流(SV)类型和混合模式(MM)类型的稳定激发模式(SV)类型和混合模式(MM)类型,这些模式无法在具有吸引力的相互作用的玻色子气中创建。首先通过论文系统地讨论诱捕能力和限制的限制能力与排斥强度的程度以及激发模式的顺序。此外,还讨论了以移动参考框架捕获在此系统中的非线性模式的稳定性。与具有均匀耦合的系统不同,当So耦合分别以X和Y方向移动时,可以稳定两种不同类型的固定迁移率模式。这一发现表明,具有移动限制的系统具有耦合,具有典型的各向异性特征,与系统不同的均匀耦合与系统不同。

It was found that spatially confined spin-orbit (SO) coupling, which can be induced by illuminating Bose-Einstein condensates (BECs) with a Gaussian laser beam, can help trap a spinor Bose gas in multi-dimensional space. Previous works on this topic were all based on a Boson gas featuring an attractive interaction. In this paper, we consider the trapping effect in the case in which the Boson gas features a repulsive interaction. After replacing the repulsive effect, stable excited modes of semi-vortex (SV) type and mixed-mode (MM) type, which cannot be created in a boson gas with attractive interactions, can be found in the current setting. The trapping ability and the capacity of the confined SO coupling versus the degree of the repulsive strength as well as the order of the excited mode are systematically discussed firstly through the paper. Moreover, the stability of the nonlinear mode trapped in this system with a moving reference frame is also discussed. Unlike the system with homogeneous SO coupling, two different types of stationary mobility modes can be stabilized when the SO coupling moves in the x- and y- directions, respectively. This finding indicates that the system with moving confined SO coupling features a typical anisotropic character that differs from the system with moving homogeneous SO coupling.

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