相对论性crm的电子束形成

V. Bratman, Yu.D. Grom, Y. Kalynov, V. Manuilov, M.M. Ofitserov, S. Samsonov
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引用次数: 0

摘要

设计并构建了一种具有热离子阴极的电子光学系统,该系统可在16 kG的轴向磁场中产生直径为0.6 mm、能量为250 keV、电流为15 a、脉冲持续时间为10 /spl mu/s的薄直线电子束。抽运系统将直线光束转换成绕轴旋转的电子束,其速度比为1.5,速度扩展足够小。给出了数值模拟和实验结果。所得光束将用于回旋共振脉泽实验。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Electron beam formation for relativistic CRMs
An electron-optical system with a thermionic cathode allowing production of a 0.6 mm diameter thin rectilinear electron beam with an energy of 250 keV, current of 15 A and pulse duration of 10 /spl mu/s in an axial magnetic field of 16 kG is designed and constructed. A pumping system transforms the straight beam into a beam of electrons gyrating around the axis with a velocity ratio of 1.5 and sufficiently small velocity spread. Results of numerical simulations and experiments are presented. The obtained beam will be used for cyclotron resonance maser experiments.
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