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Computer simulation of heat transfer in zone plate optics exposed to x-ray FEL radiation

机译:暴露于X射线FEL辐射的波带片光学器件中传热的计算机模拟

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Zone plates are circular diffraction gratings that can provide diffraction-limited nano-focusing of x-ray radiation. When designing zone plates for X-ray Free Electron Laser (XFEL) sources special attention has to be made concerning the high intensity of the sources. Absorption of x-rays in the zone material can lead to significant temperature increases in a single pulse and potentially destroy the zone plate. The zone plate might also be damaged as a result of temperature build up and/or temperature fluctuations on longer time scales. In this work we simulate the heat transfer in a zone plate on a substrate as it is exposed to XFEL radiation. This is done in a Finite Element Method model where each new x-ray pulse is treated as an instantaneous heat source and the temperature evolution between pulses is calculated by solving the heat equation. We use this model to simulate different zone plate and substrate designs and source parameters. Results for both the 8 keV source at LCLS and the 12.4 keV source at the European XFEL are presented. We simulate zone plates made of high Z metals such as gold, tungsten and iridium as well as zone plates made of low Z materials such as diamond. In the case of metal zone plates we investigate the influence of substrate material by comparing silicon and diamond substrates. We also study the effect of different cooling temperatures and cooling schemes. The results give valuable indications on the temperature behavior to expect and can serve as a basis for future experimental investigations of zone plates exposed to XFEL radiation.
机译:区域板是圆形衍射光栅,可提供X射线辐射的衍射受限纳米聚焦。在设计用于X射线自由电子激光(XFEL)光源的波带片时,必须特别注意光源的高强度。区域材料中X射线的吸收会导致单个脉冲中温度显着升高,并可能破坏区域板。由于温度升高和/或较长时间范围内的温度波动,还可能损坏分区板。在这项工作中,我们模拟了基板在暴露于XFEL辐射时在区域板上的热传递。这是在有限元方法模型中完成的,在该模型中,每个新的X射线脉冲都被当作瞬时热源,并且通过求解热方程来计算脉冲之间的温度变化。我们使用该模型来模拟不同的波带片和基板设计以及源参数。给出了LCLS的8 keV源和欧洲XFEL的12.4 keV源的结果。我们模拟由高Z金属(例如金,钨和铱)制成的区域板,以及由低Z材料(例如金刚石)制成的区域板。对于金属防区板,我们通过比较硅和金刚石基板来研究基板材料的影响。我们还研究了不同冷却温度和冷却方案的影响。结果为预期的温度行为提供了有价值的指示,并可以作为未来对XFEL辐射的波带片进行实验研究的基础。

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