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FEL beam metrology with a gas-monitor detector

机译:带有气体监测探测器的FEL光束计量

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For the determination of absolute photon fluxes from high-intense, pulsed VUV and soft X-ray sources like free-electron lasers, a gas-monitor detector system based on the photoionization of rare gases was developed. A prototype system was successfully used for the characterization of VUV free-electron laser radiation at the TESLA test facility (phase 1) in Hamburg. Pulse-resolved measurements at peak powers of more than 100 MW at a wavelength of 87 nm were demonstrated. In order to provide a photon-beam diagnostic of VUV-FEL radiation during phase 2 of the TTF project, a set of four new detectors has been constructed, based on the prototype. The new detector system can be used not only for intensity measurement and monitoring, but also for measuring the beam position. The detector set was calibrated in the Radiometry Laboratory of the Physikalisch-Technische Bundesanstalt at the electron storage ring BESSY II. The calibration was performed using spectrally-dispersed synchrotron radiation at low intensities and a semiconductor photodiode as a transfer standard.
机译:为了确定来自高强度脉冲VUV和软X射线源(如自由电子激光器)的绝对光子通量,开发了一种基于稀有气体光电离的气体监测器检测系统。在汉堡的TESLA测试设施(第1阶段)中,原型系统已成功用于表征VUV自由电子激光辐射。证实了在87 nm波长下峰值功率大于100 MW时的脉冲分辨测量。为了在TTF项目的第2阶段提供VUV-FEL辐射的光子束诊断,已基于原型构建了一组四个新的探测器。新的探测器系统不仅可以用于强度测量和监视,还可以用于测量光束位置。该探测器组在Physikalisch-Technische Bundesanstalt的辐射实验室中的电子存储环BESSY II处进行了校准。使用低强度的光谱分散同步加速器辐射和半导体光电二极管作为传输标准进行校准。

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