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自由分子的超快X射线和电子散射:比较评估

Ultrafast x-ray and electron scattering of free molecules: A comparative evaluation.

作者信息

Ma Lingyu, Yong Haiwang, Geiser Joseph D, Moreno Carrascosa Andrés, Goff Nathan, Weber Peter M

机构信息

Brown University, Department of Chemistry, Providence, Rhode Island 02912, USA.

出版信息

Struct Dyn. 2020 Jun 23;7(3):034102. doi: 10.1063/4.0000010. eCollection 2020 May.

Abstract

Resolving gas phase molecular motions with simultaneous spatial and temporal resolution is rapidly coming within the reach of x-ray Free Electron Lasers (XFELs) and Mega-electron-Volt (MeV) electron beams. These two methods enable scattering experiments that have yielded fascinating new results, and while both are important methods for determining transient molecular structures in photochemical reactions, it is important to understand their relative merits. In the present study, we evaluate the respective scattering cross sections of the two methods and simulate their ability to determine excited state molecular structures in light of currently existing XFEL and MeV source parameters. Using the example of optically excited N-methyl morpholine and simulating the scattering patterns with shot noise, we find that the currently achievable signals are superior with x-ray scattering for equal samples and on a per-shot basis and that x-ray scattering requires fewer detected signal counts for an equal fidelity structure determination. Importantly, within the independent atom model, excellent structure determinations can be achieved for scattering vectors only to about 5 Å, leaving larger scattering vector ranges for investigating vibrational motions and wavepackets. Electron scattering has a comparatively higher sensitivity toward hydrogen atoms, which may point to applications where electron scattering is inherently the preferred choice, provided that excellent signals can be achieved at large scattering angles that are currently difficult to access.

摘要

利用X射线自由电子激光(XFEL)和兆电子伏特(MeV)电子束同时实现空间和时间分辨来解析气相分子运动,正迅速成为可能。这两种方法使得散射实验产生了令人着迷的新结果,虽然这两种方法都是确定光化学反应中瞬态分子结构的重要方法,但了解它们各自的优缺点很重要。在本研究中,我们评估了这两种方法各自的散射截面,并根据现有的XFEL和MeV源参数模拟了它们确定激发态分子结构的能力。以光激发的N-甲基吗啉为例,并模拟带有散粒噪声的散射图案,我们发现对于相同的样品,在每次测量的基础上,目前可实现的信号在X射线散射方面更优,并且对于同等保真度的结构确定,X射线散射所需的检测信号计数更少。重要的是,在独立原子模型内,对于散射矢量仅到约5 Å的情况,可以实现出色的结构确定,从而为研究振动运动和波包留出更大的散射矢量范围。电子散射对氢原子具有相对较高的灵敏度,这可能指向一些应用,在这些应用中,只要能在目前难以达到的大散射角处获得出色的信号,电子散射就本质上是首选方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3127/7316516/f5c511e3e824/SDTYAE-000007-034102_1-g001.jpg

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