Site-specific interrogation of an ionic chiral fragment during photolysis using an X-ray free-electron laser

Ultrashort circularly polarised light pulses from free-electron lasers offer a route for exploring chiral molecules and their dynamics, but remain challenging to harness. Here, X-ray pump-probe experiments enable a site-specific photoelectron circular dichroism measurement on a dissociating chiral m...

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Autores principales: Markus Ilchen, Philipp Schmidt, Nikolay M. Novikovskiy, Gregor Hartmann, Patrick Rupprecht, Ryan N. Coffee, Arno Ehresmann, Andreas Galler, Nick Hartmann, Wolfram Helml, Zhirong Huang, Ludger Inhester, Alberto A. Lutman, James P. MacArthur, Timothy Maxwell, Michael Meyer, Valerija Music, Heinz-Dieter Nuhn, Timur Osipov, Dipanwita Ray, Thomas J. A. Wolf, Sadia Bari, Peter Walter, Zheng Li, Stefan Moeller, André Knie, Philipp V. Demekhin
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/7c0e42a2648348ada89c187695c4e669
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spelling oai:doaj.org-article:7c0e42a2648348ada89c187695c4e6692021-12-02T18:50:54ZSite-specific interrogation of an ionic chiral fragment during photolysis using an X-ray free-electron laser10.1038/s42004-021-00555-62399-3669https://doaj.org/article/7c0e42a2648348ada89c187695c4e6692021-08-01T00:00:00Zhttps://doi.org/10.1038/s42004-021-00555-6https://doaj.org/toc/2399-3669Ultrashort circularly polarised light pulses from free-electron lasers offer a route for exploring chiral molecules and their dynamics, but remain challenging to harness. Here, X-ray pump-probe experiments enable a site-specific photoelectron circular dichroism measurement on a dissociating chiral molecule.Markus IlchenPhilipp SchmidtNikolay M. NovikovskiyGregor HartmannPatrick RupprechtRyan N. CoffeeArno EhresmannAndreas GallerNick HartmannWolfram HelmlZhirong HuangLudger InhesterAlberto A. LutmanJames P. MacArthurTimothy MaxwellMichael MeyerValerija MusicHeinz-Dieter NuhnTimur OsipovDipanwita RayThomas J. A. WolfSadia BariPeter WalterZheng LiStefan MoellerAndré KniePhilipp V. DemekhinNature PortfolioarticleChemistryQD1-999ENCommunications Chemistry, Vol 4, Iss 1, Pp 1-9 (2021)
institution DOAJ
collection DOAJ
language EN
topic Chemistry
QD1-999
spellingShingle Chemistry
QD1-999
Markus Ilchen
Philipp Schmidt
Nikolay M. Novikovskiy
Gregor Hartmann
Patrick Rupprecht
Ryan N. Coffee
Arno Ehresmann
Andreas Galler
Nick Hartmann
Wolfram Helml
Zhirong Huang
Ludger Inhester
Alberto A. Lutman
James P. MacArthur
Timothy Maxwell
Michael Meyer
Valerija Music
Heinz-Dieter Nuhn
Timur Osipov
Dipanwita Ray
Thomas J. A. Wolf
Sadia Bari
Peter Walter
Zheng Li
Stefan Moeller
André Knie
Philipp V. Demekhin
Site-specific interrogation of an ionic chiral fragment during photolysis using an X-ray free-electron laser
description Ultrashort circularly polarised light pulses from free-electron lasers offer a route for exploring chiral molecules and their dynamics, but remain challenging to harness. Here, X-ray pump-probe experiments enable a site-specific photoelectron circular dichroism measurement on a dissociating chiral molecule.
format article
author Markus Ilchen
Philipp Schmidt
Nikolay M. Novikovskiy
Gregor Hartmann
Patrick Rupprecht
Ryan N. Coffee
Arno Ehresmann
Andreas Galler
Nick Hartmann
Wolfram Helml
Zhirong Huang
Ludger Inhester
Alberto A. Lutman
James P. MacArthur
Timothy Maxwell
Michael Meyer
Valerija Music
Heinz-Dieter Nuhn
Timur Osipov
Dipanwita Ray
Thomas J. A. Wolf
Sadia Bari
Peter Walter
Zheng Li
Stefan Moeller
André Knie
Philipp V. Demekhin
author_facet Markus Ilchen
Philipp Schmidt
Nikolay M. Novikovskiy
Gregor Hartmann
Patrick Rupprecht
Ryan N. Coffee
Arno Ehresmann
Andreas Galler
Nick Hartmann
Wolfram Helml
Zhirong Huang
Ludger Inhester
Alberto A. Lutman
James P. MacArthur
Timothy Maxwell
Michael Meyer
Valerija Music
Heinz-Dieter Nuhn
Timur Osipov
Dipanwita Ray
Thomas J. A. Wolf
Sadia Bari
Peter Walter
Zheng Li
Stefan Moeller
André Knie
Philipp V. Demekhin
author_sort Markus Ilchen
title Site-specific interrogation of an ionic chiral fragment during photolysis using an X-ray free-electron laser
title_short Site-specific interrogation of an ionic chiral fragment during photolysis using an X-ray free-electron laser
title_full Site-specific interrogation of an ionic chiral fragment during photolysis using an X-ray free-electron laser
title_fullStr Site-specific interrogation of an ionic chiral fragment during photolysis using an X-ray free-electron laser
title_full_unstemmed Site-specific interrogation of an ionic chiral fragment during photolysis using an X-ray free-electron laser
title_sort site-specific interrogation of an ionic chiral fragment during photolysis using an x-ray free-electron laser
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/7c0e42a2648348ada89c187695c4e669
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