Dark-antidark spinor solitons in spin-1 Bose gases

Christian-Marcel Schmied, P. Kevrekidis
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引用次数: 3

Abstract

We consider a one-dimensional trapped spin-1 Bose gas and numerically explore families of its solitonic solutions, namely antidark-dark-antidark (ADDAD), as well as dark-antidark-dark (DADD) solitary waves. Their existence and stability properties are systematically investigated within the experimentally accessible easy-plane ferromagnetic phase by means of a continuation over the atom number as well as the quadratic Zeeman energy. It is found that ADDADs are substantially more dynamically robust than DADDs. The latter are typically unstable within the examined parameter range. The dynamical evolution of both of these states is explored and the implication of their potential unstable evolution is studied. Some of the relevant observed possibilities involve, e.g., symmetry-breaking instability manifestations for the ADDAD, as well as splitting of the DADD into a right- and a left-moving dark-antidark pair with the anti-darks residing in a different component as compared to prior to the splitting. In the latter case, the structures are seen to disperse upon long-time propagation.
自旋为1的玻色气体中的暗-反暗旋子
我们考虑了一个一维自旋为1的被困玻色气体,并数值探索了它的孤子解族,即反暗-暗-反暗(ADDAD),以及暗-反暗-暗(DADD)孤子波。通过原子序数的延拓和二次塞曼能量的延拓,系统地研究了它们在易平面铁磁相中的存在性和稳定性。结果表明,addad比dadd具有更强的动态鲁棒性。后者在检查的参数范围内通常是不稳定的。探讨了这两种状态的动态演化,并研究了它们的潜在不稳定演化的含义。一些相关的观察到的可能性包括,例如,ADDAD的对称性破坏不稳定性表现,以及DADD分裂成一个向右和一个向左移动的暗-反-暗对,与分裂之前相比,反-暗存在于不同的分量中。在后一种情况下,可以看到结构在长时间传播后分散。
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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