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Anti-Stokes resonant x-ray Raman scattering for atom specific and excited state selective dynamics

机译:反斯托克斯共振X射线拉曼散射,用于原子特异性和激发态选择性动力学

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摘要

Ultrafast electronic and structural dynamics of matter govern rate and selectivity of chemical reactions, as well as phase transitions and efficient switching in functional materials. Since x-rays determine electronic and structural properties with elemental, chemical, orbital and magnetic selectivity, short pulse x-ray sources have become central enablers of ultrafast science. Despite of these strengths, ultrafast x-rays have been poor at picking up excited state moieties from the unexcited ones. With time-resolved anti-Stokes resonant x-ray Raman scattering (AS-RXRS) performed at the LCLS, and ab initio theory we establish background free excited state selectivity in addition to the elemental, chemical, orbital and magnetic selectivity of x-rays. This unparalleled selectivity extracts low concentration excited state species along the pathway of photo induced ligand exchange of Fe(CO)5 in ethanol. Conceptually a full theoretical treatment of all accessible insights to excited state dynamics with AS-RXRS with transform-limited x-ray pulses is given—which will be covered experimentally by upcoming transform-limited x-ray sources.
机译:物质的超快电子和结构动力学决定化学反应的速率和选择性,以及功能材料中的相变和有效转换。由于X射线通过元素,化学,轨道和磁选择性决定电子和结构性质,因此短脉冲X射线源已成为超快科学的主要推动力。尽管有这些优点,但是超快X射线在从未激发的X射线中拾取激发态部分方面一直很差。通过在LCLS上进行时间分辨的反斯托克斯共振X射线拉曼散射(AS-RXRS),从头算理论,我们建立了除X射线的元素,化学,轨道和磁选择性之外的无背景激发态选择性。这种无与伦比的选择性沿乙醇中Fe(CO)5的光诱导配体交换途径提取了低浓度的激发态物质。从概念上讲,给出了具有变换受限x射线脉冲的AS-RXRS对激发态动力学的所有可获取见解的完整理论处理-即将在实验中涵盖的变换受限x射线源将对此进行全面介绍。

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