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Ultrafast x-ray diffraction studies on Si(111) and DMABN crystals using Cu-K-α radiation

机译:超快X射线衍射研究Si(111)和DMABN晶体使用Cu-k-α辐射

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A novel laser-pumped X-ray source is used to investigate generation of shock waves in a semiconductor and conformational changes in a molecular crystal. Ultrashort Cu-Kα pulses are generated by focusing 130 fs laser pulses from the ATLAS titanium-sapphire laser of our institute on a slowly moving copper tape. Irradiating Si(111) surfaces with a few 100 mJ/cm~2 pulses at 800 nm we observe an increase in the integrated reflection on a relatively slow time scale of several 100 ps. This observation is explained by the increased geometrical structure factor generated by the shock wave propagating into a mosaic crystal. The work on conformational changes was performed with DMABN (dimethylaminobenzonitrile, sum formula C_9H_(10)N_2). A pump-probe experiment using the third harmonic of the titanium-sapphire laser (λ = 265 nm) as the pump yields indications of an increase of the 004 reflection in a time shorter than 10 ps. Such an increase is expected owing to photo-induced rotation of the two methyl groups around the major axis of the molecule.
机译:一种新型激光泵浦X射线源用于研究半导体和分子晶体的构象变化中的冲击波的产生。通过从我们的研究所的Atlas Titanium-Sapphire激光器聚焦在慢慢移动的铜带上,通过聚焦130 FS激光脉冲来产生超短的Cu-kα脉冲。在800nm处用几个100 mj / cm〜2脉冲照射Si(111)表面,我们观察到综合反射的增加,而在几幅100 p的相对慢的时间尺度上增加。通过将传播到马赛克晶体中的冲击波产生的增加的几何结构因子来解释该观察。用DMABN(二甲基氨基苯基苄腈,和公式C_9H_(10)N_2)进行对构象变化的工作。使用钛 - 蓝宝石激光(λ= 265nm)的第三次谐波的泵探针实验,因为泵产生004反射在短于10 ps的时间增加的指示。由于分子的主要轴线周围的两个甲基的光诱导旋转,期望这种增加。

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