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RF Photoinjector Development for a Short-Pulse, Hard X-Ray Thomson Scattering Source

机译:用于短脉冲,硬X射线汤姆森散射源的RF光注入器开发

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An important motivation in the development of the next generation x-ray light sources is to achieve picosecond and sub-ps pulses of hard x-rays for dynamic studies of a variety of physical, chemical and biological processes. Present hard x-ray sources are either pulse-width or intensity limited, which allows ps-scale temporal resolution only for signal averaging of highly repetitive processes. A much faster and brighter hard x-ray source is being developed at LLNL, based on Thomson scattering of fs-laser pulses by a relativistic electron beam, which will enable x-ray characterization of the transient structure of a sample in a single shot. Experimental and diagnostic techniques relevant to the development of next generation sources including the Linac Coherent Light Source can be tested with the Thomson scattering hard x-ray source. This source will combine an RF photoinjector with a 100 MeV S-band linac. The photoinjector and linac also provide an ideal test-bed for examining space-charge induced emittance growth effects. A program of beam dynamics and diagnostic experiments are planned in parallel with Thomson source development. Our experimental progress and future plans will be discussed.
机译:下一代X射线光源开发的一个重要动机是实现皮秒级和亚ps级的硬X射线脉冲,以便对各种物理,化学和生物过程进行动态研究。当前的硬X射线源受到脉冲宽度或强度的限制,这仅允许ps尺度的时间分辨率用于高度重复过程的信号平均。基于相对论电子束的fs激光脉冲的汤姆森散射,LLNL正在开发一种更快,更亮的硬X射线源,这将使X射线表征单个样品中的瞬态结构成为可能。可以使用Thomson散射硬X射线源测试与包括Linac相干光源在内的下一代光源开发相关的实验和诊断技术。该源将RF光电注入器与100 MeV S波段直线加速器结合在一起。光电注入器和直线加速器还提供了理想的试验台,用于检查空间电荷引起的发射率增长效应。与汤姆森震源开发同时计划了光束动力学和诊断实验程序。我们将讨论我们的实验进展和未来计划。

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