Molecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction

Optical methods utilizing ultrashort laser pulses are commonly used to probe structure and dynamics of atoms and molecules. Here the authors report a method which uses critical points and is capable of extracting molecular structure with picometer spatial and attosecond temporal resolution.

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Autores principales: A. Sanchez, K. Amini, S.-J. Wang, T. Steinle, B. Belsa, J. Danek, A. T. Le, X. Liu, R. Moshammer, T. Pfeifer, M. Richter, J. Ullrich, S. Gräfe, C. D. Lin, J. Biegert
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Lenguaje:EN
Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/790a14ee72ab499b8dc4abaf54e15a3c
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spelling oai:doaj.org-article:790a14ee72ab499b8dc4abaf54e15a3c2021-12-02T13:32:54ZMolecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction10.1038/s41467-021-21855-42041-1723https://doaj.org/article/790a14ee72ab499b8dc4abaf54e15a3c2021-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-21855-4https://doaj.org/toc/2041-1723Optical methods utilizing ultrashort laser pulses are commonly used to probe structure and dynamics of atoms and molecules. Here the authors report a method which uses critical points and is capable of extracting molecular structure with picometer spatial and attosecond temporal resolution.A. SanchezK. AminiS.-J. WangT. SteinleB. BelsaJ. DanekA. T. LeX. LiuR. MoshammerT. PfeiferM. RichterJ. UllrichS. GräfeC. D. LinJ. BiegertNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
A. Sanchez
K. Amini
S.-J. Wang
T. Steinle
B. Belsa
J. Danek
A. T. Le
X. Liu
R. Moshammer
T. Pfeifer
M. Richter
J. Ullrich
S. Gräfe
C. D. Lin
J. Biegert
Molecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction
description Optical methods utilizing ultrashort laser pulses are commonly used to probe structure and dynamics of atoms and molecules. Here the authors report a method which uses critical points and is capable of extracting molecular structure with picometer spatial and attosecond temporal resolution.
format article
author A. Sanchez
K. Amini
S.-J. Wang
T. Steinle
B. Belsa
J. Danek
A. T. Le
X. Liu
R. Moshammer
T. Pfeifer
M. Richter
J. Ullrich
S. Gräfe
C. D. Lin
J. Biegert
author_facet A. Sanchez
K. Amini
S.-J. Wang
T. Steinle
B. Belsa
J. Danek
A. T. Le
X. Liu
R. Moshammer
T. Pfeifer
M. Richter
J. Ullrich
S. Gräfe
C. D. Lin
J. Biegert
author_sort A. Sanchez
title Molecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction
title_short Molecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction
title_full Molecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction
title_fullStr Molecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction
title_full_unstemmed Molecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction
title_sort molecular structure retrieval directly from laboratory-frame photoelectron spectra in laser-induced electron diffraction
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/790a14ee72ab499b8dc4abaf54e15a3c
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