Auger decay calculations with core-hole excited-state molecular-dynamics simulations of water

Journal of Chemical Physics Volume 124 Issue 6 Page 064307-1-064307-9 published_at 2006-02-10
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Title ( eng )
Auger decay calculations with core-hole excited-state molecular-dynamics simulations of water
Creator
Odelius Michael
Nordlund Dennis
Nilsson Anders
Bluhm Hendrik
Pettersson Lars G. M.
Source Title
Journal of Chemical Physics
Volume 124
Issue 6
Start Page 064307-1
End Page 064307-9
Abstract
We report a new theoretical procedure for calculating Auger decay transition rates including effects of core-hole excited-state dynamics. Our procedure was applied to the normal and first resonant Auger processes of gas-phase water and compared to high-resolution experiments. In the normal Auger decay, calculated Auger spectra were found to be insensitive to the dynamics, while the repulsive character of the first resonant core-excited state makes the first resonantly excited Auger decay spectra depend strongly on the dynamics. The ultrafast dissociation of water upon O(1s)→4a1 excitation was analyzed and found to be very sensitive to initial vibrational distortions in the ground state which furthermore affect the excitation energy. Our calculated spectra reproduce the experimental Auger spectra except for the Franck-Condon vibrational structure which is not included in the procedure. We found that the Auger decay of OH and O fragments contributes to the total intensity, and that the contribution from these fragments increases with increasing excitation energy.
Language
eng
Resource Type journal article
Publisher
American Institute of Physics
Date of Issued 2006-02-10
Rights
Copyright (c) 2006 American Institute of Physics.
Publish Type Version of Record
Access Rights open access
Source Identifier
[ISSN] 0021-9606
[DOI] 10.1063/1.2166234
[NCID] AA00694991
[DOI] http://dx.doi.org/10.1063/1.2166234