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  Time-resolving state-specific molecular dissociation with XUV broadband absorption spectroscopy

Magunia, A., Rebholz, M., Appi, E., Papadopoulou, C. C., Lindenblatt, H., Trost, F., et al. (2023). Time-resolving state-specific molecular dissociation with XUV broadband absorption spectroscopy. Science Advances, 9(47): eadk1482. doi:10.1126/sciadv.adk1482.

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 Creators:
Magunia, Alexander1, Author                 
Rebholz, Marc1, Author                 
Appi, Elisa, Author
Papadopoulou, Christina C., Author
Lindenblatt, Hannes1, Author                 
Trost, Florian1, Author           
Meister, Severin1, Author                 
Ding, Thomas1, Author                 
Straub, Michael1, Author                 
Borisova, Gergana D.1, Author           
Lee, Junhee, Author
Jin, Rui1, Author           
von der Dellen, Alexander1, Author           
Kaiser, Christian1, Author           
Braune, Markus, Author
Düsterer, Stefan, Author
Ališauskas, Skirmantas, Author
Lang, Tino, Author
Heyl, Christoph, Author
Manschwetus, Bastian, Author
Grunewald, Sören, AuthorFrühling, Ulrike, AuthorTajalli, Ayhan, AuthorWahid, Ammar Bin, AuthorSilletti, Laura, AuthorCalegari, Francesca, AuthorMosel, Philip, AuthorMorgner, Uwe, AuthorKovacev, Milutin, AuthorThumm, Uwe, AuthorHartl, Ingmar, AuthorTreusch, Rolf, AuthorMoshammer, Robert1, Author                 Ott, Christian1, Author                 Pfeifer, Thomas1, Author                  more..
Affiliations:
1Division Prof. Dr. Thomas Pfeifer, MPI for Nuclear Physics, Max Planck Society, ou_2025284              

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 Abstract: The electronic and nuclear dynamics inside molecules are essential for chemical reactions, where different pathways typically unfold on ultrafast timescales. Extreme ultraviolet (XUV) light pulses generated by free-electron lasers (FELs) allow atomic-site and electronic-state selectivity, triggering specific molecular dynamics while providing femtosecond resolution. Yet, time-resolved experiments are either blind to neutral fragments or limited by the spectral bandwidth of FEL pulses. Here, we combine a broadband XUV probe pulse from high-order harmonic generation with an FEL pump pulse to observe dissociation pathways leading to fragments in different quantum states. We temporally resolve the dissociation of a specific O2+ state into two competing channels by measuring the resonances of ionic and neutral fragments. This scheme can be applied to investigate convoluted dynamics in larger molecules relevant to diverse science fields.

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 Dates: 2023-11-22
 Publication Status: Published online
 Pages: 7
 Publishing info: -
 Table of Contents: -
 Rev. Type: -
 Identifiers: DOI: 10.1126/sciadv.adk1482
 Degree: -

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Title: Science Advances
  Other : Sci. Adv.
Source Genre: Journal
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Publ. Info: Washington : AAAS
Pages: - Volume / Issue: 9 (47) Sequence Number: eadk1482 Start / End Page: - Identifier: ISSN: 2375-2548
CoNE: https://pure.mpg.de/cone/journals/resource/2375-2548