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Dark solitons in cigar-shaped Bose-Einstein condensates in double-well potentials

机译:雪茄形玻色-爱因斯坦中的暗孤子在双势势中冷凝

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摘要

We study the statics and dynamics of dark solitons in a cigar-shaped Bose-Einstein condensate confined in a double-well potential. Using a mean-field model with a noncubic nonlinearity, appropriate to describe the dimensionality crossover regime from one- to three-dimensional, we obtain branches of solutions in the form of single and multiple dark soliton states, and study their bifurcations and stability. It is demonstrated that there exist dark soliton states which do not have a linear counterpart and we highlight the role of anomalous modes in the excitation spectra. Particularly, we show that anomalous mode eigenfrequencies are closely connected to the characteristic soliton frequencies as found from the solitons' equations of motion, and how anomalous modes are related to the emergence of instabilities. We also analyze in detail the role of the height of the barrier in the double-well setting, which may lead to instabilities or decouple multiple dark soliton states.
机译:我们研究了在双井位势中的雪茄形玻色-爱因斯坦凝析物中暗孤子的静力学和动力学。使用具有非三次非线性的均值场模型,适合描述从一维到三维的维数交叉状态,我们获得了具有单个和多个暗孤子态形式的解的分支,并研究了它们的分支和稳定性。证明存在暗孤子状态,它们没有线性对应关系,并且我们突出了异常模式在激发光谱中的作用。特别地,我们表明异常模式本征频率与从孤子的运动方程中发现的特征孤子频率密切相关,并且异常模式如何与不稳定性的出现相关。我们还详细分析了势垒高度在双阱环境中的作用,这可能导致不稳定或使多个暗孤子状态解耦。

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