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Collisionless self-consistent trapping of electrons into a nonstationary potential well: Dynamics of trapped electrons

机译:无碰撞自洽将电子捕获到非平稳势阱中:捕获电子的动力学

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The subject of investigation is the early stage of self-consistent trapping of electrons into a potential well that forms during the development of aperiodic Pierce instability. An analytical estimate for threshold gap delta(th) = d(th)/lambda(D) (lambda(D) is the Debye beam length) above which the trapping begins is derived. The nonlinear dynamics and distribution function of trapped electrons are studied in detail using a numerical method ((E, K) code). It is found that the trapped particles produce a localized steep-edge bunch, which "dangles" around between the electrodes, causing potential oscillations. Trapped electrons render the well shallower. Some of the particles in the bunch are shown to periodically escape to the electrodes. As a result, the potential oscillation amplitude fades away and the mean depth of the well increases.
机译:研究的主题是电子自洽地捕获到非周期性皮尔斯不稳定性形成过程中形成的势阱中的早期阶段。得出阈值间隙delta(th)= d(th)/ lambda(D)(lambda(D)是德拜光束长度)的分析估计,在该估计值以上开始捕获。使用数值方法((E,K)代码)详细研究了捕获电子的非线性动力学和分布函数。发现捕获的颗粒产生局部的陡边束,该束在电极之间“悬垂”,从而引起潜在的振荡。被困的电子使阱变浅。束中的一些颗粒显示为周期性地逸出到电极。结果,潜在的振荡幅度逐渐消失,井的平均深度增加。

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