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Initial performance of a 500 kV chopper prebuncher injection system for a 17 GHz linac

机译:用于17 GHz直线加速器的500 kV斩波预分流器注入系统的初始性能

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The design features of a 17 GHz chopper prebuncher injection system are described, and initial test results operating with a 500 kV low emittance electron gun and single section 17 GHz linac are presented. The 17 GHz traveling wave relativistic klystron that provides the RF power to the linac structure, and the 500 W electron gun that forms the low emittance (/spl beta//spl gamma//spl epsi/ = 3/spl pi/ mm-mradian) source for the injection system, are pulsed simultaneously using the MIT Plasma Science and Fusion Center HV modulator. The HV injection system is designed to produce RF bunches of 15/spl deg/ to 20/spl deg/ for injection into the linac structure, with subsequent compression to approximately 1 degree to provide sub-picosecond bunch operation over an energy range of 10 to 20 MeV with steady-state pulse currents of up to 250 mA. The use of an economical, on-line diagnostic system having the capability of accurately measuring the short RF bunch performance of the 17 GHz linac would be highly advantageous; and a simple technique of accomplishing this, using higher order mode 17 GHz cavities, is discussed.
机译:描述了17 GHz斩波预捆扎器注入系统的设计特征,并给出了使用500 kV低发射率电子枪和单节17 GHz直线加速器运行的初步测试结果。向线性加速器结构提供RF功率的17 GHz行波相对论速调管和形成低发射率的500 W电子枪(/ spl beta // spl gamma // spl epsi / = 3 / spl pi / mm-弧度使用MIT Plasma Science和Fusion Center HV调制器同时对注入系统的信号源进行脉冲化。 HV注入系统设计用于产生15 / spl deg /至20 / spl deg /的RF束,以注入到直线加速器结构中,随后压缩到大约1度,以在10到10的能量范围内提供亚皮秒的束操作20 MeV,稳态脉冲电流高达250 mA。使用能够精确测量17 GHz直线加速器的短RF束性能的经济,在线诊断系统将是非常有利的;讨论了使用高阶模式17 GHz腔体实现此目的的简单技术。

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