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Electronic decay of core-excited HCl molecules probed by THz streaking

The ultrafast electronic decay of HCl molecules in the time domain after resonant core excitation was measured. Here, a Cl-2p core electron was promoted to the antibonding σ(*) orbital initiating molecular dissociation, and simultaneously, the electronic excitation relaxes via an Auger decay. For HC...

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Autores principales: Wenig, K., Wieland, M., Baumann, A., Walther, S., Dimitriou, A., Prandolini, M. J., Schepp, O., Bermúdez Macias, I., Sumfleth, M., Stojanovic, N., Düsterer, S., Rönsch-Schulenburg, J., Zapolnova, E., Pan, R., Drescher, M., Frühling, U.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Crystallographic Association 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6506338/
https://www.ncbi.nlm.nih.gov/pubmed/31123698
http://dx.doi.org/10.1063/1.5091756
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author Wenig, K.
Wieland, M.
Baumann, A.
Walther, S.
Dimitriou, A.
Prandolini, M. J.
Schepp, O.
Bermúdez Macias, I.
Sumfleth, M.
Stojanovic, N.
Düsterer, S.
Rönsch-Schulenburg, J.
Zapolnova, E.
Pan, R.
Drescher, M.
Frühling, U.
author_facet Wenig, K.
Wieland, M.
Baumann, A.
Walther, S.
Dimitriou, A.
Prandolini, M. J.
Schepp, O.
Bermúdez Macias, I.
Sumfleth, M.
Stojanovic, N.
Düsterer, S.
Rönsch-Schulenburg, J.
Zapolnova, E.
Pan, R.
Drescher, M.
Frühling, U.
author_sort Wenig, K.
collection PubMed
description The ultrafast electronic decay of HCl molecules in the time domain after resonant core excitation was measured. Here, a Cl-2p core electron was promoted to the antibonding σ(*) orbital initiating molecular dissociation, and simultaneously, the electronic excitation relaxes via an Auger decay. For HCl, both processes compete on similar ultrashort femtosecond time scales. In order to measure the lifetime of the core hole excitation, we collinearly superimposed 40 fs soft x-ray pulses with intense terahertz (THz) radiation from the free-electron laser in Hamburg (FLASH). Electrons emitted from the molecules are accelerated (streaked) by the THz electric field where the resulting momentum change depends on the field's phase at the instant of ionization. Evaluation of a time-shift between the delay-dependent streaking spectra of photo- and Auger electrons yields a decay constant of (11 ± 2) fs for LMM Auger electrons. For further validation, the method was also applied to the MNN Auger decay of krypton. Reproduction of the value already published in the literature confirms that a temporal resolution much below the duration of the exciting x-ray pulses can be reached.
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spelling pubmed-65063382019-05-23 Electronic decay of core-excited HCl molecules probed by THz streaking Wenig, K. Wieland, M. Baumann, A. Walther, S. Dimitriou, A. Prandolini, M. J. Schepp, O. Bermúdez Macias, I. Sumfleth, M. Stojanovic, N. Düsterer, S. Rönsch-Schulenburg, J. Zapolnova, E. Pan, R. Drescher, M. Frühling, U. Struct Dyn ARTICLES The ultrafast electronic decay of HCl molecules in the time domain after resonant core excitation was measured. Here, a Cl-2p core electron was promoted to the antibonding σ(*) orbital initiating molecular dissociation, and simultaneously, the electronic excitation relaxes via an Auger decay. For HCl, both processes compete on similar ultrashort femtosecond time scales. In order to measure the lifetime of the core hole excitation, we collinearly superimposed 40 fs soft x-ray pulses with intense terahertz (THz) radiation from the free-electron laser in Hamburg (FLASH). Electrons emitted from the molecules are accelerated (streaked) by the THz electric field where the resulting momentum change depends on the field's phase at the instant of ionization. Evaluation of a time-shift between the delay-dependent streaking spectra of photo- and Auger electrons yields a decay constant of (11 ± 2) fs for LMM Auger electrons. For further validation, the method was also applied to the MNN Auger decay of krypton. Reproduction of the value already published in the literature confirms that a temporal resolution much below the duration of the exciting x-ray pulses can be reached. American Crystallographic Association 2019-05-08 /pmc/articles/PMC6506338/ /pubmed/31123698 http://dx.doi.org/10.1063/1.5091756 Text en © 2019 Author(s). 2329-7778/2019/6(3)/034301/7 All article content, except where otherwise noted, is licensed under a Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle ARTICLES
Wenig, K.
Wieland, M.
Baumann, A.
Walther, S.
Dimitriou, A.
Prandolini, M. J.
Schepp, O.
Bermúdez Macias, I.
Sumfleth, M.
Stojanovic, N.
Düsterer, S.
Rönsch-Schulenburg, J.
Zapolnova, E.
Pan, R.
Drescher, M.
Frühling, U.
Electronic decay of core-excited HCl molecules probed by THz streaking
title Electronic decay of core-excited HCl molecules probed by THz streaking
title_full Electronic decay of core-excited HCl molecules probed by THz streaking
title_fullStr Electronic decay of core-excited HCl molecules probed by THz streaking
title_full_unstemmed Electronic decay of core-excited HCl molecules probed by THz streaking
title_short Electronic decay of core-excited HCl molecules probed by THz streaking
title_sort electronic decay of core-excited hcl molecules probed by thz streaking
topic ARTICLES
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6506338/
https://www.ncbi.nlm.nih.gov/pubmed/31123698
http://dx.doi.org/10.1063/1.5091756
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