Dynamics of Two Dark Solitons in a Polariton Condensate

Pub Date : 2022-01-01 DOI:10.1088/0256-307X/39/2/020501
Y. Zhang 张, C. Jia 贾, Z. Liang 梁
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Abstract

We theoretically investigate dynamics of two dark solitons in a polariton condensate under nonresonant pumping, based on driven dissipative Gross–Pitaevskii equations coupled to the rate equation. The equation of motion of the relative center position of two-dark soliton is obtained analytically by using the Lagrangian approach. In particular, the analytical expression of the effective potential between two dark solitons is given. The resulting equation of motion captures how the open-dissipative character of a polariton Bose–Einstein condensate affects properties of dynamics of two-dark soliton, i.e., two-dark soliton relax by blending with the background at a finite time. We further simulate the relative motion of two dark solitons numerically with the emphasis on how two-soliton motion is manipulated by the initial velocity, in excellent agreement with the analytical results. The prediction of this work is sufficient for the experimental observations within current facilities.
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极化子凝聚体中两个暗孤子的动力学
基于驱动耗散Gross-Pitaevskii方程和速率方程,从理论上研究了非共振泵浦下极化子凝聚体中两个暗孤子的动力学。利用拉格朗日方法解析得到了双暗孤子相对中心位置的运动方程。特别地,给出了两个暗孤子之间有效势的解析表达式。所得到的运动方程捕捉了极化子玻色-爱因斯坦凝聚体的开耗散特性如何影响双暗孤子的动力学性质,即双暗孤子在有限时间内通过与背景混合而松弛。我们进一步数值模拟了两个暗孤子的相对运动,重点研究了初始速度如何操纵两个暗孤子的运动,结果与分析结果非常吻合。这项工作的预测足以在现有设施内进行实验观测。
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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