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Soliton dynamics and interaction in the Bose-Einstein condensates with harmonic trapping potential and time-varying interatomic interaction

机译:玻色-爱因斯坦凝聚体中的孤子动力学和相互作用,具有谐波俘获势和时变原子间相互作用

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摘要

Investigated in this paper is the quasi-one-dimensional Gross-Pitaevskii equation, which describes the dynamics of the Bose-Einstein condensates with the harmonic trapping potential and time-varying interatomic interaction. Via the Horita method and symbolic computation, analytic bright N-soliton solution is obtained. One-, two- and three-soliton solutions are analyzed graphically. Based on the limit analysis on the one- and two-soliton solutions, the modulation on the speed of the matter-wave bright solitons is realized. Via the parameters, the interaction between the matter-wave solitons are adjustable. Furthermore, an approach to construct the interference between the matter-wave solitons has been proposed. Finally, investigation on the three-soliton solution verifies our conclusions drawn from the one and two solitons. Our conclusions might be useful in the fields of the control on the matter-wave solitons, atom lasers, and atomic accelerators.
机译:本文研究的是准一维Gross-Pitaevskii方程,该方程描述了具有谐波俘获势和时变原子间相互作用的Bose-Einstein凝聚物的动力学。通过Horita方法和符号计算,得到解析的亮N孤子解。用图形分析一,二和三孤子解决方案。基于对一孤子和二孤子解的极限分析,实现了对物波亮孤子速度的调制。通过参数,可调节物质波孤子之间的相互作用。此外,已经提出了一种构造物质波孤子之间的干涉的方法。最后,对三孤子解的研究验证了我们从一个和两个孤子得出的结论。我们的结论可能对物质波孤子,原子激光器和原子加速器的控制领域有用。

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