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Numerical simulations of the hard X-ray pulse intensity distribution at the Linac Coherent Light Source

机译:直线加速器相干光源下硬X射线脉冲强度分布的数值模拟

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摘要

Numerical simulations of the current and future pulse intensity distributions at selected locations along the Far Experimental Hall, the hard X-ray section of the Linac Coherent Light Source (LCLS), are provided. Estimates are given for the pulse fluence, energy and size in and out of focus, taking into account effects due to the experimentally measured divergence of the X-ray beam, and measured figure errors of all X-ray optics in the beam path. Out-of-focus results are validated by comparison with experimental data. Previous work is expanded on, providing quantitatively correct predictions of the pulse intensity distribution. Numerical estimates in focus are particularly important given that the latter cannot be measured with direct imaging techniques due to detector damage. Finally, novel numerical estimates of improvements to the pulse intensity distribution expected as part of the on-going upgrade of the LCLS X-ray transport system are provided. We suggest how the new generation of X-ray optics to be installed would outperform the old one, satisfying the tight requirements imposed by X-ray free-electron laser facilities.
机译:提供了沿远实验大厅(直线加速器相干光源(LCLS)的硬X射线部分)选定位置的当前和未来脉冲强度分布的数值模拟。考虑到由于实验测得的X射线束发散所产生的影响以及束路径中所有X射线光学器件的测量图形误差,给出了脉冲通量,能量和焦点对准和聚焦大小的估计值。通过与实验数据进行比较,可以验证散焦结果。扩展了先前的工作,提供了对脉冲强度分布的定量正确预测。鉴于由于检测器损坏而无法使用直接成像技术进行测量,因此重点关注的数字估算尤为重要。最后,提供了对LC强度X射线传输系统进行中的升级所期望的脉冲强度分布改善的新颖数值估计。我们建议将要安装的新一代X射线光学器件性能将优于旧的X射线光学器件,以满足X射线自由电子激光设备提出的严格要求。

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