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Extracting conformational structure information of benzene molecules via laser-induced electron diffraction

机译:激光诱导电子衍射法提取苯分子的构象结构信息

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We have measured the angular distributions of high energy photoelectrons of benzene molecules generated by intense infrared femtosecond laser pulses. These electrons arise from the elastic collisions between the benzene ions with the previously tunnel-ionized electrons that have been driven back by the laser field. Theory shows that laser-free elastic differential cross sections (DCSs) can be extracted from these photoelectrons, and the DCS can be used to retrieve the bond lengths of gas-phase molecules similar to the conventional electron diffraction method. From our experimental results, we have obtained the C-C and C-H bond lengths of benzene with a spatial resolution of about 10?pm. Our results demonstrate that laser induced electron diffraction (LIED) experiments can be carried out with the present-day ultrafast intense lasers already. Looking ahead, with aligned or oriented molecules, more complete spatial information of the molecule can be obtained from LIED, and applying LIED to probe photo-excited molecules, a “molecular movie” of the dynamic system may be created with sub-?ngstr?m spatial and few-ten femtosecond temporal resolutions.
机译:我们已经测量了由强红外飞秒激光脉冲产生的苯分子的高能光电子的角分布。这些电子是由于苯离子与先前被激光场驱动返回的隧道离子化电子之间的弹性碰撞而产生的。理论表明,可以从这些光电子中提取无激光的弹性微分截面(DCSs),并且类似于传统的电子衍射方法,DCS可以用于检索气相分子的键长。从我们的实验结果中,我们获得了苯的C-C和C-H键长,其空间分辨率约为10µpm。我们的结果表明,可以使用当今的超快强激光进行激光诱导电子衍射(LIED)实验。展望未来,利用排列或定向的分子,可以从LIED获得分子的更完整的空间信息,并将LIED应用于探测光激发的分子,可以用亚微细链产生动态系统的“分子电影”。 m个空间分辨率和几十飞秒的时间分辨率。

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