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The MEL-X project at the Lawrence Livermore National Laboratory: a mirror-based delay line for x-rays

机译:劳伦斯·利弗莫尔国家实验室的MEL-X项目:X射线的基于镜面的延迟线

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At the Lawrence Livermore National Laboratory (LLNL) in collaboration with the Linac Coherent Light Source (LCLS) we are developing a mirror-based delay line for x-rays (MEL-X) to enable x-ray pump/x-ray probe experiments at Free Electron Lasers (XFELs). The goal of this project is the development and deployment of a proof-of-principle delay line featuring coated x-ray optics. The four-mirror design of the MEL-X is motivated by the need for ease of alignment and use. In order to simplify the overlap of the pump and the probe beam after each delay time change, a scheme involving super-polished rails and mirror-to-motor decoupling has been adopted. The MEL-X, used in combination with a bright pulsed source like LCLS, features a capability for a high intensity pump beam. Its Iridium coating allows it to work at hard x-ray energies all the way up to 9 keV, with a probe beam transmission of 35% up to 8keV, and 14% at 9keV. The delay time can be tailored to each particular experiment, with a nominal range of 70 - 350 fs for this prototype. The MEL-X, combined with established techniques such as x-ray diffraction, absorption or emission, could provide new insights on ultra-fast transitions in highly excited states of matter.
机译:在劳伦斯·利弗莫尔国家实验室(LLNL)与直线加速器相干光源(LCLS)的合作下,我们正在开发基于反射镜的X射线延迟线(MEL-X),以进行X射线泵浦/ X射线探针实验在自由电子激光器(XFEL)。该项目的目标是开发和部署带有涂层X射线光学器件的原理验证延迟线。 MEL-X的四镜设计是出于易于对准和使用的需要。为了简化每次延迟时间更改后泵浦和探测光束的重叠,已采用了一种涉及超抛光导轨和镜像到电机去耦的方案。 MEL-X与LCLS等明亮脉冲源结合使用,具有高强度泵浦光束的功能。它的铱涂层使其能够一直在高达9 keV的硬X射线能量下工作,探头光束透射率高达8keV时为35%,9keV时为14%。延迟时间可以针对每个特定实验进行调整,此原型的标称范围为70-350 fs。 MEL-X与诸如X射线衍射,吸收或发射等已建立的技术相结合,可以为在高激发态下的超快速跃迁提供新的见解。

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