直线感应加速器试验台优化

M. Ong, B. DeHope, K. Griffin, D. Goerz, R. Kihara, G. Vogtlin, J. Zentler, R. Scarpetti
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引用次数: 2

摘要

劳伦斯利弗莫尔国家实验室设计并建造了一个测试台,以改善我们的闪光x射线(FXR)加速器电池的电压调节。目标是创造一个更单一能量的电子束,从而产生一个具有更小光斑尺寸的x射线源。研究光束和脉冲功率系统与加速器单元的相互作用,改进了利弗莫尔和其他地方的大电流加速器的设计。在试验台上,采用柔性脉冲电源系统驱动标准FXR单元,通过切换中心导体模拟光束电流。试验台配备了高速数字化仪器,以记录电池在各种全电压条件下工作时阻抗不匹配的影响。通过测量加速器和脉冲功率组件的阻抗,还开发了时域反射技术来表征光束和细胞的相互作用。计算机模型正在与测试程序并行开发,以验证测量结果并评估不同的设计更改。同时使用了三维瞬变电磁模型和电路模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Test stand for linear induction accelerator optimization
Lawrence Livermore National Laboratory has designed and constructed a test stand to improve the voltage regulation in our flash X-Ray (FXR) accelerator cell. The goal is to create a more mono-energetic electron beam that creates an X-ray source with a smaller spot size. Studying the interaction of the beam and pulse-power system with the accelerator cell improves the design of high-current accelerators at Livermore and elsewhere. On the test stand, a standard FXR cell is driven by a flexible pulse-power system and the beam current is simulated with a switched center conductor. The test stand is fully instrumented with high-speed digitizers to document the effect of impedance mis-matches when the cell is operated under various full-voltage conditions. A time-domain reflectometry technique was also developed to characterize the beam and cell interactions by measuring the impedance of the accelerator and pulse-power component. Computer models are being developed in parallel with the testing program to validate the measurements and evaluate different design changes. Both 3D transient electromagnetic and circuit models are being used.
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