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Chemical interactions and dynamics with femtosecond X-ray spectroscopy and the role of X-ray free-electron lasers

机译:飞秒X射线光谱的化学相互作用和动力学以及X射线自由电子激光的作用

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摘要

X-ray free-electron lasers with intense, tuneable and short-pulse X-ray radiation are transformative tools for the investigation of transition-metal complexes and metalloproteins. This becomes apparent in particular when combining the experimental observables from X-ray spectroscopy with modern theoretical tools for calculations of electronic structures and X-ray spectra from first principles. The combination gives new insights into how charge and spin densities change in chemical reactions and how they determine reactivity. This is demonstrated for the investigations of structural dynamics with metal K-edge absorption spectroscopy, spin states in excited-state dynamics with metal 3p-3d exchange interactions, the frontier-orbital interactions in dissociation and substitution reactions with metal-specific X-ray spectroscopy, and studies of metal oxidation states with femtosecond pulses for ‘probe-before-destroy’ spectroscopy. The role of X-ray free-electron lasers is addressed with thoughts about how they enable ‘bringing back together’ different aspects of the same problem and this is thought to go beyond a conventional review paper where these aspects are formulated in italic font type in a prequel, an interlude and in a sequel.This article is part of the theme issue ‘Measurement of ultrafast electronic and structural dynamics with X-rays'.
机译:具有强烈,可调节和短脉冲X射线辐射的X射线自由电子激光器是研究过渡金属配合物和金属蛋白的变革性工具。当将X射线光谱学的实验可观察物与现代理论工具结合起来用于根据第一原理计算电子结构和X射线光谱时,这一点尤其明显。这种结合为化学反应中电荷和自旋密度的变化以及它们如何确定反应性提供了新的见解。这是用金属K边缘吸收光谱研究结构动力学,用金属3p-3d交换相互作用激发态动力学中的自旋态,用金属特异性X射线光谱研究解离和取代反应中的前沿轨道相互作用证明的,并用飞秒脉冲研究“销毁前探测”光谱中的金属氧化态。 X射线自由电子激光器的作用是通过思考如何使“同一问题”的不同方面“重新结合”来解决的,这被认为超出了传统的综述论文,在这些论文中,这些方面以斜体字体表示。本文是主题问题“用X射线测量超快电子和结构动力学”的一部分。

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