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The quantum dusty magnetosonic solitary wave in magnetized plasma

机译:磁化等离子体中的量子尘埃磁声孤波

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The effects of quantum statistic and quantum diffraction on the weakly two-dimensional fast quantum dusty magnetosonic wave propagating perpendicular to the external magnetic field are investigated by considering the inertialess electron, inertialess ion, and inertial cold dust in the low frequency limit. A Kadomstev-Petviashvili equation is derived for the magnetosonic solitary wave by using reductive perturbation method. The results show that the amplitude of soliton increases with the increasing of quantum diffraction effects of both electrons and ions, while the amplitude of the soliton decreases with the increasing of the quantum statistic effects. By using the numerical investigations, the interaction law of the nontrivial line-solitons with rich web structure in the interaction area among the line-solitons is studied by the Wronskian determinant method, which shows that there is no exchange of the energy, the momentum, and the angular momentum in the interaction.
机译:通过在低频范围内考虑无惯性电子,无惯性离子和惯性冷尘,研究了量子统计和量子衍射对垂直于外部磁场传播的弱二维快速量子尘埃磁声波的影响。利用还原摄动法,推导了磁声孤立波的Kadomstev-Petviashvili方程。结果表明,孤子的振幅随着电子和离子的量子衍射效应的增加而增加,而孤子的振幅则随着量子统计效应的增加而减小。通过数值研究,利用Wronskian行列式方法研究了线型孤子之间相互作用区域内具有丰富网状结构的非平凡线型孤子的相互作用规律,表明没有能量,动量,以及相互作用中的角动量

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