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首页> 外文期刊>European Physical Journal Plus >Propagation of surface waves in a spin 1/2 magnetized collisional quantum plasma half-space
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Propagation of surface waves in a spin 1/2 magnetized collisional quantum plasma half-space

机译:表面波在旋转1/2磁化碰撞量子等离子体半空间中的传播

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The quantum magnetohydrodynamics model, including the correction terms of the Bohm potential, quantum pressure, collision and intrinsic spin of electrons, is employed to investigate the propagation of surface waves in a semi-bounded spin 1/2 magnetized collisional quantum plasma. The parametric equation method is used to derive the highly nonlinear dispersion relation. Furthermore, the exact dispersion relation is solved numerically. It is shown that the external magnetic field increases the group and phase velocities of the surface waves in both collisionless and collisional quantum plasma, while the spin contribution leads to a decrease in the phase velocity. In the collisional quantum plasma, the damping rate of the surface waves is increased by the external magnetic field and the spin of the electrons.
机译:Quantum磁流动正动态模型,包括BoHM电位,量子压力,碰撞和电子的内在旋转的校正项,用于研究表面波在半界旋转1/2磁化的碰撞量子等离子体中的传播。 参数型方法用于推导出高度非线性色散关系。 此外,在数值上解决了精确的分散关系。 结果表明,外部磁场增加了碰撞和碰撞量子等离子体中的表面波的组和相速度,而自旋贡献导致相速度的减小。 在碰撞量子等离子体中,表面波的阻尼速率由外部磁场和电子的旋转增加。

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