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Enabling cost-effective high-current burst-mode operation in superconducting accelerators

机译:在超导加速器中实现具有成本效益的大电流突发模式操作

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Superconducting (SC) accelerators are very efficient for CW or long-pulse operation, and normal conducting (NC) accelerators are cost effective for short-pulse operation. The addition of a short NC linac section to a SC linac can correct for the energy droop that occurs when pulsed high-current operation is required that exceeds the capability of the klystrons to replenish the cavity RF fields due to the long field fill-times of SC structures, or a requirement to support a broad range of beam currents results in variable beam loading. This paper describes the implementation of this technique to enable microseconds of high beam-current, 90 mA or more, in a 12 GeV SC long-pulse accelerator designed for the MaRIE 42-keV XFEL proposed for Los Alamos National Laboratory.
机译:对于CW或长脉冲操作,超导(SC)加速器非常有效,而对于短脉冲操作,普通导电(NC)加速器具有成本效益。在SC直线加速器上增加了一个短的NC直线加速器部分,可以纠正由于需要较长的磁场填充时间而需要速激流器补充速调管补充腔RF场的能力时,发生的能量下降。 SC结构或支持广泛的电子束电流的要求会导致可变的电子束负载。本文介绍了该技术的实现方式,该技术可在为Los Alamos国家实验室建议的MaRIE 42-keV XFEL设计的12 GeV SC长脉冲加速器中实现90微秒或更高的高束流电流。

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