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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. B, Beam Interactions with Materials and Atoms >Thermal loading on self-seeding monochromators in x-ray free electron lasers
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Thermal loading on self-seeding monochromators in x-ray free electron lasers

机译:X射线自由光激光器自播种单色器上的热负荷

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One approach to achieve longitudinally coherent hard X-ray free electron laser (XFEL) radiation is to introduce a single-crystal monochromator in the beam path to generate a co-propagating, time-synchronized self-seeding radiation pulse. For modem high-repetition rate XFELs, however, thermal loading on the crystal can degrade the quality of the seed pulse. To assess limitations on the maximum XFEL pulse repetition rate imposed by the seeding crystal, a comprehensive study of thermomechanical, and X-ray diffraction effects within the crystal is presented for two consecutive self-amplified spontaneous emission pulses incident on both reflective and transmissive crystal monochromators.
机译:实现纵向相干的硬X射线自由激光器(XFEL)辐射的一种方法是在光束路径中引入单晶单色器,以产生共传播的,时间同步的自播辐射脉冲。然而,对于调制解调器高重复率XFEL,晶体上的热负荷可以降低种子脉冲的质量。为了评估播种晶体施加的最大XFEL脉冲重复速率的限制,呈现出晶体内的热机械和X射线衍射效应的综合研究,用于入射在反射和透射晶体单色器上的两个连续自增大的自发发射脉冲。

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