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Dissipative nonlinear waves in a gravitating quantum fluid

机译:抛出量子液中的耗散非线性波

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摘要

Nonlinear wave propagation is studied in a dissipative, self-gravitating Bose-Einstein condensate, starting from the Gross-Pitaevskii equation. In the absence of an exact analytical result, approximate methods like the linear analysis and perturbative approach are applied. The linear dispersion relation puts a restriction on the permissible range of the dissipation parameter. The waves get damped due to dissipation. The small amplitude analysis using reductive perturbation technique is found to yield a modified form of KdV equation, which is solved both analytically as well as numerically. Interestingly, the analytical and numerical plots match excellently with each other, in the realm of weak dissipation.
机译:从Grooss-Pitaevskii方程开始,在耗散的自我引力的Bose-Einstein冷凝物中研究了非线性波传播。 在没有精确的分析结果的情况下,应用了线性分析和扰动方法的近似方法。 线性色散关系对耗散参数的允许范围限制。 由于耗散,海浪就会受到阻尼。 发现使用还原性扰动技术的小幅度分析产生改性形式的KDV方程,其在分析和数字上求解。 有趣的是,分析和数值绘图彼此匹配,在弱势耗散的领域中。

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