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Two-dimensional retrieval methods for ultrafast imaging of molecular structure using laser-induced electron diffraction.

作者信息

Wang Su-Ju, Daněk Jiří, Blaga Cosmin I, DiMauro Louis F, Biegert Jens, Lin C D

机构信息

J. R. Macdonald Laboratory, Department of Physics, Kansas State University, Manhattan, Kansas 66506, USA.

Department of Physics, The Ohio State University, Columbus, Ohio 43210, USA.

出版信息

J Chem Phys. 2021 Oct 28;155(16):164104. doi: 10.1063/5.0064761.

DOI:10.1063/5.0064761
PMID:34717362
Abstract

Molecular structural retrieval based on electron diffraction has been proposed to determine the atomic positions of molecules with sub-angstrom spatial and femtosecond temporal resolutions. Given its success on small molecular systems, in this work, we point out that the accuracy of structure retrieval is constrained by the availability of a wide range of experimental data in the momentum space in all molecular systems. To mitigate the limitations, for laser-induced electron diffraction, here we retrieve molecular structures using two-dimensional (energy and angle) electron momentum spectra in the laboratory frame for a number of small molecular systems, which have previously been studied with 1D methods. Compared to the conventional single-energy or single-angle analysis, our 2D methods effectively expand the momentum range of the measured data. Besides utilization of the 2D data, two complementary methods are developed for consistency check on the retrieved results. The 2D nature of our methods also offers a way of estimating the error from retrieval, which has never been explored before. Comparing with results from prior experiments, our findings show evidence that our 2D methods outperform the conventional 1D methods. Paving the way to the retrieval of large molecular systems, in which their tunneling ionization rates are challenging to obtain, we estimate the error of using the isotropic model in place of including the orientation-dependent ionization rate.

摘要

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引用本文的文献

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Laser-induced electron diffraction: Imaging of a single gas-phase molecular structure with one of its own electrons.激光诱导电子衍射:用分子自身的一个电子对单个气相分子结构进行成像。
Struct Dyn. 2024 Aug 30;11(4):041301. doi: 10.1063/4.0000237. eCollection 2024 Jul.