Real-time observation of X-ray-induced intramolecular and interatomic electronic decay in CH 2 I 2

The increasing availability of X-ray free-electron lasers (XFELs) has catalyzed the development of single-object structural determination and of structural dynamics tracking in real-time. Disentangling the molecular-level reactions triggered by the interaction with an XFEL pulse is a fundamental ste...

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Veröffentlicht in:Nature communications 2019-05, Vol.10 (1), p.2186
Hauptverfasser: Fukuzawa, Hironobu, Takanashi, Tsukasa, Kukk, Edwin, Motomura, Koji, Wada, Shin-Ichi, Nagaya, Kiyonobu, Ito, Yuta, Nishiyama, Toshiyuki, Nicolas, Christophe, Kumagai, Yoshiaki, Iablonskyi, Denys, Mondal, Subhendu, Tachibana, Tetsuya, You, Daehyun, Yamada, Syuhei, Sakakibara, Yuta, Asa, Kazuki, Sato, Yuhiro, Sakai, Tsukasa, Matsunami, Kenji, Umemoto, Takayuki, Kariyazono, Kango, Kajimoto, Shinji, Sotome, Hikaru, Johnsson, Per, Schöffler, Markus S, Kastirke, Gregor, Kooser, Kuno, Liu, Xiao-Jing, Asavei, Theodor, Neagu, Liviu, Molodtsov, Serguei, Ochiai, Kohei, Kanno, Manabu, Yamazaki, Kaoru, Owada, Shigeki, Ogawa, Kanade, Katayama, Tetsuo, Togashi, Tadashi, Tono, Kensuke, Yabashi, Makina, Ghosh, Aryya, Gokhberg, Kirill, Cederbaum, Lorenz S, Kuleff, Alexander I, Fukumura, Hiroshi, Kishimoto, Naoki, Rudenko, Artem, Miron, Catalin, Kono, Hirohiko, Ueda, Kiyoshi
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Sprache:eng
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Zusammenfassung:The increasing availability of X-ray free-electron lasers (XFELs) has catalyzed the development of single-object structural determination and of structural dynamics tracking in real-time. Disentangling the molecular-level reactions triggered by the interaction with an XFEL pulse is a fundamental step towards developing such applications. Here we report real-time observations of XFEL-induced electronic decay via short-lived transient electronic states in the diiodomethane molecule, using a femtosecond near-infrared probe laser. We determine the lifetimes of the transient states populated during the XFEL-induced Auger cascades and find that multiply charged iodine ions are issued from short-lived (∼20 fs) transient states, whereas the singly charged ones originate from significantly longer-lived states (∼100 fs). We identify the mechanisms behind these different time scales: contrary to the short-lived transient states which relax by molecular Auger decay, the long-lived ones decay by an interatomic Coulombic decay between two iodine atoms, during the molecular fragmentation.
ISSN:2041-1723
DOI:10.1038/s41467-019-10060-z