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首页> 外文期刊>IEEE Transactions on Plasma Science >Beam rotation and shear in a large electron beam diode
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Beam rotation and shear in a large electron beam diode

机译:大型电子束二极管中的束流旋转和剪切

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The time-averaged electron-beam current distribution of one of the electron guns of the large Aperture Module (LAM) of the Aurora laser was measured as part of a larger set of experiments designed to study the electron beam transport to and energy deposition in the LAM laser chamber. The radiograms made on the center line of the LAM laser chamber while the laser chamber was at vacuum pressure demonstrated several of the expected results. The beam was relatively uniform over the aperture, with the exception of shadows cast by the diode anode wires, the Hibachi ribs, and the Hibachi support structure. At a depth of 50 cm into the laser chamber, the self-magnetic field of the beam produced a shear in the top and bottom edges of 15 cm. At the same depth the applied magnetic field caused a rotation of the entire beam profile of about 3 degrees .
机译:作为设计用于研究电子束向电子传输和能量沉积的大型实验的一部分,测量了Aurora激光大孔径模块(LAM)的其中一个电子枪的时间平均电子束电流分布。 LAM激光腔室。当激光室处于真空压力时,在LAM激光室的中心线上进行的放射线照相显示了一些预期结果。除了二极管阳极丝,希巴奇筋和希巴奇支撑结构所产生的阴影外,光束在整个孔径上相对均匀。在进入激光腔的深度为50厘米时,光束的自磁场在顶部和底部边缘产生15厘米的剪切力。在相同的深度,施加的磁场导致整个光束轮廓旋转大约3度。

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