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Fields' dynamics under overlimiting electron beam instability development in microwave sources

机译:微波源中电子束不稳定性超限发展下的场动力学

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The evolution of initial perturbations in a plasma-filled system with a high current relativistic electron beam is considered. The beam current is assumed to be comparable or higher than the limiting vacuum current. The approach is based on equation for slowly varying amplitude of the induced waveform, which enable us to separate out the most intrinsic peculiarities of the overlimiting electron beam instabilities. An equation for slowly varying amplitude is derived and solved. An analytical expression describing space structure and development dynamics of the fields is obtained and analyzed. The well-known maximal growth rate of beam instability is actually the growth rate in the peak of induced wave train. Results are valid both for instability due to aperiodic modulation of the beam density in medium with negative dielectric constant and for instability due to excitation of beam wave with negative energy. Comparison with the case of a sublimiting beam is carried out.
机译:考虑了在具有高电流相对论电子束的等离子体填充系统中初始扰动的演化。假定束电流等于或高于极限真空电流。该方法基于感应波形幅度缓慢变化的方程式,这使我们能够分离出超限电子束不稳定性的最固有特征。导出并求解了振幅缓慢变化的方程式。获得并分析了描述空间结构和田间开发动态的解析表达式。众所周知,光束不稳定性的最大增长率实际上就是感应波列峰值的增长率。结果既对由于介电常数为负的介质中的光束密度的非周期性调制引起的不稳定性,又由于对具有负能量的束波的激发引起的不稳定性均有效。与限制光束的情况进行比较。

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