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Device for source position stabilization and beam parameter monitoring at inverse Compton X-ray sources

机译:逆康普顿X射线源的源位置稳定和光束参数监控装置

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摘要

Compact X-ray sources based on inverse Compton scattering provide brilliant and partially coherent X-rays in a laboratory environment. The cross section for inverse Compton scattering is very small, requiring high-power laser systems as well as small laser and electron beam sizes at the interaction point to generate sufficient flux. Therefore, these systems are very sensitive to distortions which change the overlap between the two beams. In order to monitor X-ray source position, size and flux in parallel to experiments, the beam-position monitor proposed here comprises a small knife edge whose image is acquired with an X-ray camera specifically designed to intercept only a very small fraction of the X-ray beam. Based on the source position drift recorded with the monitor, a closed-loop feedback stabilizes the X-ray source position by adjusting the laser beam trajectory. A decrease of long-term source position drifts by more than one order of magnitude is demonstrated with this device. Consequently, such a closed-loop feedback system which enables stabilization of source position drifts and flux of inverse Compton sources in parallel to experiments has a significant impact on the performance of these sources.
机译:基于逆康普顿散射的紧凑型X射线源可在实验室环境中提供明亮且部分相干的X射线。逆康普顿散射的横截面非常小,需要大功率激光系统以及在相互作用点处具有小的激光束和电子束大小才能产生足够的通量。因此,这些系统对改变两个光束之间的重叠的畸变非常敏感。为了与实验平行地监视X射线源的位置,大小和通量,此处提出的光束位置监视器包括一个小的刀刃,其刀刃图像是通过专门设计为仅截取一小部分X射线摄影机的X射线照相机获取的X射线束。基于监视器记录的源位置漂移,闭环反馈通过调整激光束轨迹来稳定X射线源位置。该设备证明了长期源位置漂移的减少幅度超过一个数量级。因此,这样的闭环反馈系统能够在与实验并行的同时稳定源位置漂移和逆康普顿源的通量,对这些源的性能产生重大影响。

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