Modernization of the Marx and Rimfire Triggering Systems for the HERMES-III Accelerator

C. Grabowski, J. Santillanes, A. Shay, B. Smart, G. Tilley, K. Tunell, N. Joseph, S. Coffey, G. Archuleta, E. Gutierrez, B. Hughes, J. Lott, R. Natal, I. Owens
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引用次数: 1

Abstract

HERMES III is a 20-MeV linear induction accelerator that was constructed at Sandia National Laboratories in the late 1980's and continues operation to this day. The accelerator utilizes 10 Marx banks for its initial energy storage and pulse formation. These Marx banks discharge their energy into 20 intermediate storage capacitors which, in turn, feed 80 pulse forming lines that further condition the pulse. Transmission line feeds from the pulse forming lines then deliver the electrical energy to 20 induction cavities arrayed along the axis of the machine to build the final output pulse along a central magnetically insulated transmission line (MITL). There are two triggering systems within the accelerator that work together in this energy discharge process. One simultaneously triggers the initial discharge of energy from each of the 10 Marx banks; the other staggers the triggering of the Rimfire gas switches following each intermediate storage capacitor so as to properly synchronize the energy delivery to the downstream cavities and the MITL with the pulse propagation along the MITL. Until recently, these triggering systems were the original systems dating back to the initial commissioning of the accelerator, however both have now been replaced with new and more modernized systems. Design details for both triggering systems will be presented, along with an overview of some of the initial operational data from the HERMES III accelerator using these new triggering systems.
赫尔墨斯- iii加速器马克思和Rimfire触发系统的现代化
HERMES III是20 mev线性感应加速器,于20世纪80年代末在桑迪亚国家实验室建造,并继续运行至今。加速器利用10个马克思库进行初始能量储存和脉冲形成。这些马克思银行将其能量释放到20个中间存储电容器中,这些电容器依次馈送80条脉冲形成线,进一步调节脉冲。传输线从脉冲形成线馈电,然后将电能输送到沿机器轴线排列的20个感应腔,沿着中央磁绝缘传输线(MITL)形成最终的输出脉冲。在这个能量释放过程中,加速器内有两个触发系统一起工作。一个同时触发10个马克思银行的初始能量释放;另一种是错开Rimfire气体开关在每个中间存储电容器之后的触发,从而使能量传递到下游腔和MITL与脉冲沿MITL传播适当同步。直到最近,这些触发系统都是加速器初始调试时的原始系统,但是现在都被新的和更现代化的系统所取代。将介绍两种触发系统的设计细节,以及使用这些新触发系统的HERMES III加速器的一些初始操作数据的概述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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