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Double-core-hole spectroscopy for chemical analysis with an intense X-ray femtosecond laser

机译:双芯孔光谱法用于强X射线飞秒激光的化学分析

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摘要

Theory predicts that double-core-hole (DCH) spectroscopy can provide a new powerful means of differentiating between similar chemical systems with a sensitivity not hitherto possible. Although DCH ionization on a single site in molecules was recently measured with double- and single-photon absorption, double-core holes with single vacancies on two different sites, allowing unambiguous chemical analysis, have remained elusive. Here we report that direct observation of double-core holes with single vacancies on two different sites produced via sequential two-photon absorption, using short, intense X-ray pulses from the Linac Coherent Light Source free-electron laser and compare it with theoretical modeling. The observation of DCH states, which exhibit a unique signature, and agreement with theory proves the feasibility of the method. Our findings exploit the ultrashort pulse duration of the free-electron laser to eject two core electrons on a time scale comparable to that of Auger decay and demonstrate possible future X-ray control of physical inner-shell processes.
机译:理论预测,双核孔(DCH)光谱可以提供一种区分相似化学系统的强大新手段,其灵敏度迄今尚不可能。尽管最近通过双光子吸收和单光子吸收对分子中单个位点的DCH电离进行了测量,但是在两个不同位点具有单空位的双核孔仍然可以实现清晰的化学分析,但仍然难以实现。在这里我们报告说,使用直线加速器相干光源自由电子激光产生的短而强烈的X射线脉冲,可以直接观察通过连续两次光子吸收在两个不同位置产生的具有单个空位的双核孔,并将其与理论模型进行比较。 DCH状态的观察显示出独特的特征,并与理论相吻合,证明了该方法的可行性。我们的发现利用自由电子激光的超短脉冲持续时间,以与俄歇衰变相当的时间尺度发射两个核心电子,并证明了未来可能对物理内壳过程进行X射线控制。

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