Deep inner-shell multiphoton ionization by intense X-ray free-electron laser pulses

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Abstract

We have investigated multiphoton multiple ionization dynamics of xenon atoms using a new x-ray free-electron laser facility, SPring-8 Angstrom Compact free electron LAser (SACLA) in Japan, and identified that Xen+ with n up to 26 is produced at a photon energy of 5.5 keV. The observed high charge states (n≥24) are produced via five-photon absorption, evidencing the occurrence of multiphoton absorption involving deep inner shells. A newly developed theoretical model, which shows good agreement with the experiment, elucidates the complex pathways of sequential electronic decay cascades accessible in heavy atoms. The present study of heavy-atom ionization dynamics in high-intensity hard-x-ray pulses makes a step forward towards molecular structure determination with x-ray free-electron lasers. © 2013 American Physical Society.

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Fukuzawa, H., Son, S. K., Motomura, K., Mondal, S., Nagaya, K., Wada, S., … Ueda, K. (2013). Deep inner-shell multiphoton ionization by intense X-ray free-electron laser pulses. Physical Review Letters, 110(17). https://doi.org/10.1103/PhysRevLett.110.173005

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