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Two-gigawatt burst-mode operation of the intense microwave prototype (IMP) free-electron laser (FEL) for the microwave tokamak experiment (MTX)

机译:用于微波托卡马克实验(MTX)的强微波原型(IMP)自由电子激光器(FEL)的2吉瓦突发模式操作

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The MTX explored the plasma heating effects of 140 GHz microwaves from both Gyrotrons and from the IMP FEL wiggler. The Gyrotron was long pulse length (0.5 seconds maximum) and the FEL produced short-pulse length, high-peak power, single and burst modes of 140 GHz microwaves. Full-power operations of the IMP FEL wiggler were commenced in April of 1992 and continued into October of 1992. The Experimental Test Accelerator II (ETA-II) provided a 50-nanosecond, 6-MeV, 2-3 kAmp electron beam that was introduced co-linear into the IMP FEL with a 140 GHz Gyrotron master oscillator (MO). The FEL was able to amplify the MO signal from approximately 7 kW to peaks consistently in the range of 1-2 GW. This microwave pulse was transmitted into the MTX and allowed the exploration of the linear and non-linear effects of short pulse, intense power in the MTX plasma. Single pulses were used to explore and gain operating experience in the parameter space of the IMP FEL, and finally evaluate transmission and absorption in the MTX. Single-pulse operations were repeatable. After the MTX was shut down burst-mode operations were successful at 2 kHz. This paper will describe the IMP FEL, Microwave Transmission System to MTX, the diagnostics used for measurements, and tile operations of the entire Microwave system. A discussion of correlated and uncorrelated errors that affect FEL performance will be made. Linear and nonlinear absorption data of the microwaves in the MTX plasma will be presented.
机译:MTX探索了回旋加速器和IMP FEL wiggler产生的140 GHz微波的等离子体加热效果。回旋加速器的脉冲长度长(最大0.5秒),而FEL产生的短脉冲长度,高峰值功率,140 GHz微波的单脉冲和猝发模式。 IMP FEL摆动器的全功率运行于1992年4月开始,一直持续到1992年10月。实验加速器II(ETA-II)提供了50纳秒,6-MeV,2-3 kAmp的电子束,在140 GHz回旋加速器主振荡器(MO)中将共线性引入到IMP FEL中。 FEL能够将MO信号从大约7 kW放大到1-2 GW范围内的峰值。该微波脉冲被传输到MTX中,并允许探索MTX等离子体中短脉冲,强功率的线性和非线性效应。单脉冲用于探索和获得IMP FEL参数空间中的操作经验,并最终评估MTX中的传输和吸收。单脉冲操作是可重复的。 MTX关闭后,突发模式操作在2 kHz时成功完成。本文将介绍IMP FEL,MTX的微波传输系统,用于测量的诊断程序以及整个微波系统的贴图操作。将讨论影响FEL性能的相关和不相关错误。将介绍MTX等离子体中微波的线性和非线性吸收数据。

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