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@ARTICLE{Garg:596728,
      author       = {Garg, Diksha and Chopra, Pragya and Lee, Jason Wai Lung and
                      Tikhonov, Denis and Kumar, Sonu and Akcaalan, Oender and
                      Allum, Felix and Boll, Rebecca and Butler, Alexander and
                      Erk, Benjamin and Gougoula, Eva and Gruet, Sebastien Patrice
                      and He, Lanhai and Heathcote, David and Jones, Ellen and
                      Kazemi, Mehdi M. and Lahl, Jan and Lemmens, Alexander and
                      Liu, Zhihao and Loru, Donatella and Maclot, Sylvain and
                      Mason, Robert and Merrick, James and Mueller, Erland and
                      Mullins, Terence and Papadopoulou, Christina and Passow,
                      Christopher and Peschel, Jasper and Plach, Marius and Ramm,
                      Daniel and Robertson, Patrick and Rompotis, Dimitrios and
                      Pinto Simao, Alcides and Steber, Amanda and Tajalli Seifi,
                      Ayhan and Trippel, Sebastian and Tul-Noor, Atia and
                      Vadassery, Nidin and Vinklarek, Ivo and Techert, Simone and
                      Küpper, Jochen and Rijs, Anouk and Rolles, Daniel and
                      Brouard, Mark and Bari, Sadia and Eng-Johnsson, Per and
                      Vallance, Claire and Burt, Michael and Manschwetus, Bastian
                      and Schnell, Melanie},
      title        = {{U}ltrafast dynamics of polycyclic aromatic hydrocarbons
                      initiated by highly intense laser fields},
      journal      = {Physical chemistry, chemical physics},
      volume       = {26},
      number       = {30},
      issn         = {1463-9076},
      address      = {Cambridge},
      publisher    = {RSC Publ.},
      reportid     = {PUBDB-2023-06253},
      pages        = {20261-20272},
      year         = {2024},
      note         = {preprint:611717},
      abstract     = {We present an investigation of the ultrafast dynamics of
                      the polycyclic aromatic hydrocarbon fluorene initiated by an
                      intense femtosecond infrared laser pulse and probed by a
                      weak visible pulse. Using a multichannel detection scheme
                      (mass spectra, electron and ion velocity-map imaging), we
                      provide a full disentanglement of the complex dynamics of
                      the vibronically excited parent molecule, its excited ionic
                      states, and fragments. We observed channels resulting from
                      both multiphoton- and tunnel-ionization regimes. In
                      particular, we observed the formation of the unstable
                      tetracation of fluorene, above-threshold ionization features
                      in the photoelectron spectra, and evidence of ubiquitous
                      secondary fragmentation.We produced a global fit of all
                      observed time-dependent photoelectron and photoion channels.
                      This global fit includes four parent ions extracted from the
                      mass spectra, 15 kinetic-energy-resolved ionic fragments
                      extracted from ion velocity map imaging, and five
                      photoelectron channels obtained from electron velocity map
                      imaging. The fit allowed the extraction of 60 transient
                      lifetimes corresponding to different photoinduced
                      intermediates.},
      cin          = {FS-SMP / FS-SCS / FS-CFEL-CMI / FS-FL / FS-LA},
      ddc          = {540},
      cid          = {I:(DE-H253)FS-SMP-20171124 / I:(DE-H253)FS-SCS-20131031 /
                      I:(DE-H253)FS-CFEL-CMI-20220405 / I:(DE-H253)FS-FL-20120731
                      / I:(DE-H253)FS-LA-20130416},
      pnm          = {631 - Matter – Dynamics, Mechanisms and Control
                      (POF4-631) / 6G2 - FLASH (DESY) (POF4-6G2) / DFG project
                      390715994 - EXC 2056: CUI: Advanced Imaging of Matter
                      (390715994) / DFG project 390677874 - EXC 2033: RESOLV (Ruhr
                      Explores Solvation) (390677874) / ASTROROT - Unraveling
                      interstellar chemistry with broadband microwave spectroscopy
                      and next-generation telescope arrays (638027) / CALIPSOplus
                      - Convenient Access to Light Sources Open to Innovation,
                      Science and to the World (730872) / FS-Proposal: F-20170540
                      (F-20170540) / FS-Proposal: F-20211752 (F-20211752)},
      pid          = {G:(DE-HGF)POF4-631 / G:(DE-HGF)POF4-6G2 /
                      G:(GEPRIS)390715994 / G:(GEPRIS)390677874 /
                      G:(EU-Grant)638027 / G:(EU-Grant)730872 /
                      G:(DE-H253)F-20170540 / G:(DE-H253)F-20211752},
      experiment   = {EXP:(DE-H253)F-BL1-20150101},
      typ          = {PUB:(DE-HGF)16},
      pubmed       = {38958416},
      UT           = {WOS:001260995200001},
      doi          = {10.1039/D3CP05063G},
      url          = {https://bib-pubdb1.desy.de/record/596728},
}