Disentangling formation of multiple-core holes in aminophenol molecules exposed to bright X-FEL radiation

Competing multi-photon ionization processes, some leading to the formation of double core hole states, have been examined in 4-aminophenol. The experiments used the linac coherent light source (LCLS) x-ray free electron laser, in combination with a time-of-flight magnetic bottle electron spectromete...

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Veröffentlicht in:Journal of physics. B, Atomic, molecular, and optical physics Atomic, molecular, and optical physics, 2015-10, Vol.48 (24), p.244003-244011
Hauptverfasser: Zhaunerchyk, V, Kami ska, M, Mucke, M, Squibb, R J, Eland, J H D, Piancastelli, M N, Frasinski, L J, Grilj, J, Koch, M, McFarland, B K, Sistrunk, E, Gühr, M, Coffee, R N, Bostedt, C, Bozek, J D, Salén, P, Meulen, P v d, Linusson, P, Thomas, R D, Larsson, M, Foucar, L, Ullrich, J, Motomura, K, Mondal, S, Ueda, K, Richter, R, Prince, K C, Takahashi, O, Osipov, T, Fang, L, Murphy, B F, Berrah, N, Feifel, R
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Sprache:eng
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Zusammenfassung:Competing multi-photon ionization processes, some leading to the formation of double core hole states, have been examined in 4-aminophenol. The experiments used the linac coherent light source (LCLS) x-ray free electron laser, in combination with a time-of-flight magnetic bottle electron spectrometer and the correlation analysis method of covariance mapping. The results imply that 4-aminophenol molecules exposed to the focused x-ray pulses of the LCLS sequentially absorb more than two x-ray photons, resulting in the formation of multiple core holes as well as in the sequential removal of photoelectrons and Auger electrons (so-called PAPA sequences).
ISSN:0953-4075
1361-6455
1361-6455
DOI:10.1088/0953-4075/48/24/244003