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Laser-induced melting of a single crystal gold sample by time-resolved ultrafast relativistic electron diffraction

机译:时间分辨超快相对论电子衍射的激光诱导单晶金样品熔化

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We report the experimental demonstration of time-resolved relativistic electron diffraction. Single shot diffraction patterns from a single crystal gold sample were recorded using ultrashort 3.5 MeV electron bunches from a radio frequency photoinjector. By scanning the pump pulse time-delay, we studied the Bragg peaks amplitude change due to the laser-induced melting of the sample. The observed time scale matches the one predicted using a simple two temperature model of the heating of the thin foil. Time-resolved relativistic electron diffraction using megaelectronvolt electron beams with 107 particles in 100 fs bunch length opens exciting possibilities in ultrafast structural dynamics.
机译:我们报告了时间分辨相对论电子衍射的实验证明。使用来自射频光注入器的超短3.5 MeV电子束记录单晶金样品的单发衍射图。通过扫描泵浦脉冲的时延,我们研究了由于激光诱导的样品熔化而导致的布拉格峰幅度变化。观察到的时间刻度与使用薄箔加热的简单两个温度模型预测的时间刻度匹配。使用具有100 fs束长的107个粒子的兆电子束的时间分辨相对论电子衍射为超快结构动力学提供了令人兴奋的可能性。

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