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Shukla-Spatschek diffusion effects on the spatial damping of space-charge waves in a turbulent plasma waveguide

机译:Shukla-Spatschek扩散对湍流等离子体波导中空间电荷波的空间阻尼的影响

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摘要

The physical characteristics of the spatial damping of the space-charge plasma wave are investigated in a turbulent plasma waveguide. The dispersion relation for the space-charge plasma wave is derived including the propagation wave number as well as the spatial damping rate including the Shukla-Spatschek diffusion effect. The results show that the propagation wave number and the spatial damping rate increase with increasing the wave frequency. It is found that the influence of plasma turbulence enhances the spatial damping rate of the space-charge wave. It is also found that the propagation wave number and spatial damping rate with a higher-order root of the Bessel solution are greater than those with a lower-order root. In addition, it is found that the spatial damping rate decreases with an increase of the thermal energy. Moreover, it is found that the propagation wave number and the spatial damping rate decrease with increasing the radius of the waveguide. The variation of the spatial damping due to the turbulent diffusion, thermal, and geometric effects is also discussed.
机译:在湍流等离子体波导中研究了空间电荷等离子体波的空间阻尼的物理特性。推导出了空间电荷等离子体波的色散关系,包括传播波数以及包括舒克拉-斯帕契克扩散效应在内的空间阻尼率。结果表明,传播波数和空间阻尼率随着波频率的增加而增加。发现等离子体湍流的影响增强了空间电荷波的空间阻尼率。还发现,贝塞尔解的高阶根的传播波数和空间阻尼率大于低阶根的传播波数和空间阻尼率。另外,发现空间阻尼率随着热能的增加而降低。此外,发现随着波导半径的增加,传播波数和空间阻尼率减小。还讨论了由于湍流扩散,热效应和几何效应引起的空间阻尼变化。

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