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Excitation of surface plasma waves by a density modulated electron beam at a conductor-dusty plasma interface

机译:导体-尘土等离子体界面上的密度调制电子束对表面等离子体波的激发

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摘要

A density modulated electron beam propagating through a conductor-dusty plasma interface drives electromagnetic surface plasma waves (SPWs) to instability via Cerenkov and cyclotron interaction. The SPWs propagate across an external magnetic field parallel to the interface. Numerical calculations of the growth rate and unstable mode frequencies have been carried out for the typical parameters of the SPWs. The frequency and the growth rate of the unstable wave instability increase with the relative density of negatively charged dust grains δ?(=?n_(io)_(eo), where n_(io) is the ion plasma density and n_(eo) is the electron plasma density). The phase velocity of the unstable waves also increases with δ. In addition, the growth rate of the instability increases with the beam density and scales as one-third power of the beam density in Cerenkov interaction and square root of beam density in fast cyclotron interaction. Moreover, the dispersion relation of SPWs has been retrieved in the absence of the modulated beam and without dust grains.
机译:通过导体-尘土等离子体界面传播的密度调制电子束通过切伦科夫和回旋加速器相互作用将电磁表面等离子体波(SPW)驱动到不稳定状态。 SPW在平行于界面的外部磁场中传播。对于SPW的典型参数,已经进行了增长率和不稳定模式频率的数值计算。不稳定波不稳定性的频率和增长率随带负电的尘埃颗粒的相对密度δ?(=?n_(io)/ n_(eo)而增加,其中n_(io)是离子等离子体密度,n_(eo )是电子等离子体密度)。不稳定波的相速度也随δ增加。另外,不稳定性的增长速率随着束密度的增加而增加,并且在切伦科夫相互作用中是束密度的三分之一,在快速回旋加速器中是束密度的平方根。此外,在没有调制光束且无尘粒的情况下,已经恢复了SPW的色散关系。

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