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Self‐modulation of an intense relativistic electron beam

机译:强相对论电子束的自调制

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High levels of coherent current and energy oscillations appeared on an intense relativistic electron beam traversing a smooth drift tube in which two or more coaxial cavities were inserted. The frequency of oscillation depended strongly on the geometry of the drift region but only weakly on beam current and voltage. The frequency spectrum of modulation was monochromatic. By changing geometry, frequencies of up to 3 GHz were observed. Relativistic electron beams with voltages varying from 0.25 to 1 MeV and currents from 1 to 8 kA were modulated with efficiencies approaching 100%. The structure of the electron bunches was tailored by changes in the geometry. Both theory and particle simulation show that the presence of the cavities along the drift tube altered the simple streaming motion of the beam in a smooth drift tube resulting in a highly nonlinear beam behavior. The complex beam dynamics was governed by formation of virtual cathodes, reflexing electrons, and autoacceleration. Shaped electron bunches have many applications in collective acceleration, high power microwave production, and plasma heating.
机译:穿过相对光滑的漂移管的强相对论电子束中出现了高水平的相干电流和能量振荡,在光滑的漂移管中插入了两个或多个同轴空腔。振荡频率在很大程度上取决于漂移区的几何形状,而在很小程度上取决于电子束电流和电压。调制的频谱是单色的。通过改变几何形状,观察到高达3 GHz的频率。相对论电子束的电压在0.25到1 MeV之间变化,电流在1到8 kA之间,调制效率接近100%。电子束的结构是根据几何形状的变化量身定制的。理论和粒子模拟都表明,沿着漂移管的空腔的存在改变了光束在平滑漂移管中的简单流动运动,从而导致了高度非线性的光束行为。复杂的电子束动力学受虚拟阴极的形成,反射电子和自加速的支配。成形的电子束在集体加速,高功率微波生产和等离子加热中具有许多应用。

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    《Journal of Applied Physics 》 |1984年第9期| P.2459-2474| 共16页
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  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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