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Temperature effects on the propagation and Landau damping of the dust surface waves

机译:对灰尘表面波的传播和Landau阻尼的温度效应

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The integral of the kinetic electrostatic surface wave dispersion relation is evaluated to determine the wave frequency and the corresponding Landau damping rate for the surface mode of dust ion-acoustic waves including the effect of ion temperature by using the general perturbation and the transverse truncation methods. It is demonstrated that the increase in ion temperature enhances the wave frequency. The effect of ion temperature is more prominent in the range of large wave numbers, and the wave frequency increases in proportion to a quarter power of the ion temperature in the realm of large wave number. The Landau damping of the dust ion-acoustic surface wave is found to be suppressed as the ion temperature increases. However, the effect of ion temperature becomes negligible as the wave number increases. The effects of dust charge and electron density on the Landau damping rate are also presented in this work. Published under license by AIP Publishing.
机译:评估动力学静电表面波色散关系的积分,以确定灰尘离子声波表面模式的波频和相应的Landau阻尼率,包括通过使用通用扰动和横短截断方法来实现离子温度的效果。 证明离子温度的增加增强了波频。 离子温度在大波数范围内更加突出,波频与大波数领域的离子温度的四分之一功率成比例地增加。 发现粉尘离子声表面波的LANDAU被抑制,因为离子温度升高。 然而,由于波数增加,离子温度的效果变得可忽略不计。 在这项工作中还介绍了粉尘电荷和电子密度对Landau阻尼速率的影响。 通过AIP发布在许可证下发布。

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