二维铁磁超流体中的类暗孤子磁畴壁

Xiaoquan Yu, P. B. Blakie
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引用次数: 6

摘要

我们报道了均匀铁磁自旋-1凝聚体中的磁畴壁,这是一种稳定的拓扑激励,其磁化特征是具有不消失的超流体密度的暗孤子轮廓。在没有磁场的情况下,该畴壁通过$\textrm{SO}(3)$自旋将二元凝聚体中的各种不同的孤立激发联系起来,否则它们是不相连的。我们找到了一个特定的相互作用参数比的精确解,并发展了一个适用于整个铁磁相的精确解析解。研究了一个准二维(准二维)系统的动力学,证明了畴壁的驻波激励振荡无衰减,对蛇形不稳定性是稳定的。畴壁对于导致磁化扭曲的模式是动态不稳定的。然而,噪声存在下的动力学表明,这种“自旋扭曲”不稳定性不会破坏磁畴壁的拓扑结构。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dark-soliton-like magnetic domain walls in a two-dimensional ferromagnetic superfluid
We report a magnetic domain wall in a uniform ferromagnetic spin-1 condensate, a stable topological excitation characterized by the magnetization having a dark soliton profile with nonvanishing superfluid density. In the absence of magnetic fields, this domain wall relates various distinct solitary excitations in binary condensates through $\textrm{SO}(3)$ spin rotations, which otherwise are unconnected. We find an exact solution for a particular ratio of interaction parameters, and develop an accurate analytic solution applicable to the whole ferromagnetic phase. Studying the dynamics of a quasi-two-dimensional (quasi-2D) system we show that standing wave excitations of the domain wall oscillate without decay, being stable against the snake instability. The domain wall is dynamically unstable to modes that cause the magnetization to twist. However, dynamics in the presence of noise reveals that this "spin twist" instability does not destroy the topological structure of the magnetic domain wall.
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