Cargando…

Charge-induced chemical dynamics in glycine probed with time-resolved Auger electron spectroscopy

In the present contribution, we use x-rays to monitor charge-induced chemical dynamics in the photoionized amino acid glycine with femtosecond time resolution. The outgoing photoelectron leaves behind the cation in a coherent superposition of quantum mechanical eigenstates. Delayed x-ray pulses trac...

Descripción completa

Detalles Bibliográficos
Autores principales: Schwickert, David, Ruberti, Marco, Kolorenč, Přemysl, Przystawik, Andreas, Skruszewicz, Slawomir, Sumfleth, Malte, Braune, Markus, Bocklage, Lars, Carretero, Luis, Czwalinna, Marie Kristin, Diaman, Dian, Düsterer, Stefan, Kuhlmann, Marion, Palutke, Steffen, Röhlsberger, Ralf, Rönsch-Schulenburg, Juliane, Toleikis, Sven, Usenko, Sergey, Viefhaus, Jens, Vorobiov, Anton, Martins, Michael, Kip, Detlef, Averbukh, Vitali, Marangos, Jon P., Laarmann, Tim
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Crystallographic Association 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9646253/
https://www.ncbi.nlm.nih.gov/pubmed/36389279
http://dx.doi.org/10.1063/4.0000165
_version_ 1784827122763694080
author Schwickert, David
Ruberti, Marco
Kolorenč, Přemysl
Przystawik, Andreas
Skruszewicz, Slawomir
Sumfleth, Malte
Braune, Markus
Bocklage, Lars
Carretero, Luis
Czwalinna, Marie Kristin
Diaman, Dian
Düsterer, Stefan
Kuhlmann, Marion
Palutke, Steffen
Röhlsberger, Ralf
Rönsch-Schulenburg, Juliane
Toleikis, Sven
Usenko, Sergey
Viefhaus, Jens
Vorobiov, Anton
Martins, Michael
Kip, Detlef
Averbukh, Vitali
Marangos, Jon P.
Laarmann, Tim
author_facet Schwickert, David
Ruberti, Marco
Kolorenč, Přemysl
Przystawik, Andreas
Skruszewicz, Slawomir
Sumfleth, Malte
Braune, Markus
Bocklage, Lars
Carretero, Luis
Czwalinna, Marie Kristin
Diaman, Dian
Düsterer, Stefan
Kuhlmann, Marion
Palutke, Steffen
Röhlsberger, Ralf
Rönsch-Schulenburg, Juliane
Toleikis, Sven
Usenko, Sergey
Viefhaus, Jens
Vorobiov, Anton
Martins, Michael
Kip, Detlef
Averbukh, Vitali
Marangos, Jon P.
Laarmann, Tim
author_sort Schwickert, David
collection PubMed
description In the present contribution, we use x-rays to monitor charge-induced chemical dynamics in the photoionized amino acid glycine with femtosecond time resolution. The outgoing photoelectron leaves behind the cation in a coherent superposition of quantum mechanical eigenstates. Delayed x-ray pulses track the induced coherence through resonant x-ray absorption that induces Auger decay. Temporal modulation of the Auger electron signal correlated with specific ions is observed, which is governed by the initial electronic coherence and subsequent vibronic coupling to nuclear degrees of freedom. In the time-resolved x-ray absorption measurement, we monitor the time-frequency spectra of the resulting many-body quantum wave packets for a period of 175 fs along different reaction coordinates. Our experiment proves that by measuring specific fragments associated with the glycine dication as a function of the pump-probe delay, one can selectively probe electronic coherences at early times associated with a few distinguishable components of the broad electronic wave packet created initially by the pump pulse in the cation. The corresponding coherent superpositions formed by subsets of electronic eigenstates and evolving along parallel dynamical pathways show different phases and time periods in the range of [Formula: see text] and [Formula: see text] fs. Furthermore, for long delays, the data allow us to pinpoint the driving vibrational modes of chemical dynamics mediating charge-induced bond cleavage along different reaction coordinates.
format Online
Article
Text
id pubmed-9646253
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher American Crystallographic Association
record_format MEDLINE/PubMed
spelling pubmed-96462532022-11-15 Charge-induced chemical dynamics in glycine probed with time-resolved Auger electron spectroscopy Schwickert, David Ruberti, Marco Kolorenč, Přemysl Przystawik, Andreas Skruszewicz, Slawomir Sumfleth, Malte Braune, Markus Bocklage, Lars Carretero, Luis Czwalinna, Marie Kristin Diaman, Dian Düsterer, Stefan Kuhlmann, Marion Palutke, Steffen Röhlsberger, Ralf Rönsch-Schulenburg, Juliane Toleikis, Sven Usenko, Sergey Viefhaus, Jens Vorobiov, Anton Martins, Michael Kip, Detlef Averbukh, Vitali Marangos, Jon P. Laarmann, Tim Struct Dyn ARTICLES In the present contribution, we use x-rays to monitor charge-induced chemical dynamics in the photoionized amino acid glycine with femtosecond time resolution. The outgoing photoelectron leaves behind the cation in a coherent superposition of quantum mechanical eigenstates. Delayed x-ray pulses track the induced coherence through resonant x-ray absorption that induces Auger decay. Temporal modulation of the Auger electron signal correlated with specific ions is observed, which is governed by the initial electronic coherence and subsequent vibronic coupling to nuclear degrees of freedom. In the time-resolved x-ray absorption measurement, we monitor the time-frequency spectra of the resulting many-body quantum wave packets for a period of 175 fs along different reaction coordinates. Our experiment proves that by measuring specific fragments associated with the glycine dication as a function of the pump-probe delay, one can selectively probe electronic coherences at early times associated with a few distinguishable components of the broad electronic wave packet created initially by the pump pulse in the cation. The corresponding coherent superpositions formed by subsets of electronic eigenstates and evolving along parallel dynamical pathways show different phases and time periods in the range of [Formula: see text] and [Formula: see text] fs. Furthermore, for long delays, the data allow us to pinpoint the driving vibrational modes of chemical dynamics mediating charge-induced bond cleavage along different reaction coordinates. American Crystallographic Association 2022-11-08 /pmc/articles/PMC9646253/ /pubmed/36389279 http://dx.doi.org/10.1063/4.0000165 Text en © 2022 Author(s). https://creativecommons.org/licenses/by/4.0/All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle ARTICLES
Schwickert, David
Ruberti, Marco
Kolorenč, Přemysl
Przystawik, Andreas
Skruszewicz, Slawomir
Sumfleth, Malte
Braune, Markus
Bocklage, Lars
Carretero, Luis
Czwalinna, Marie Kristin
Diaman, Dian
Düsterer, Stefan
Kuhlmann, Marion
Palutke, Steffen
Röhlsberger, Ralf
Rönsch-Schulenburg, Juliane
Toleikis, Sven
Usenko, Sergey
Viefhaus, Jens
Vorobiov, Anton
Martins, Michael
Kip, Detlef
Averbukh, Vitali
Marangos, Jon P.
Laarmann, Tim
Charge-induced chemical dynamics in glycine probed with time-resolved Auger electron spectroscopy
title Charge-induced chemical dynamics in glycine probed with time-resolved Auger electron spectroscopy
title_full Charge-induced chemical dynamics in glycine probed with time-resolved Auger electron spectroscopy
title_fullStr Charge-induced chemical dynamics in glycine probed with time-resolved Auger electron spectroscopy
title_full_unstemmed Charge-induced chemical dynamics in glycine probed with time-resolved Auger electron spectroscopy
title_short Charge-induced chemical dynamics in glycine probed with time-resolved Auger electron spectroscopy
title_sort charge-induced chemical dynamics in glycine probed with time-resolved auger electron spectroscopy
topic ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9646253/
https://www.ncbi.nlm.nih.gov/pubmed/36389279
http://dx.doi.org/10.1063/4.0000165
work_keys_str_mv AT schwickertdavid chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT rubertimarco chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT kolorencpremysl chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT przystawikandreas chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT skruszewiczslawomir chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT sumflethmalte chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT braunemarkus chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT bocklagelars chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT carreteroluis chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT czwalinnamariekristin chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT diamandian chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT dustererstefan chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT kuhlmannmarion chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT palutkesteffen chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT rohlsbergerralf chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT ronschschulenburgjuliane chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT toleikissven chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT usenkosergey chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT viefhausjens chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT vorobiovanton chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT martinsmichael chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT kipdetlef chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT averbukhvitali chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT marangosjonp chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy
AT laarmanntim chargeinducedchemicaldynamicsinglycineprobedwithtimeresolvedaugerelectronspectroscopy