H2+ formation from H2O+ mediated by the core-excitation-induced nuclear motion in H2O

Physical review A Volume 63 Issue 4 Page 042705-1-042705-5 published_at 2001-04
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Title ( eng )
H2+ formation from H2O+ mediated by the core-excitation-induced nuclear motion in H2O
Creator
Nobusada K.
Simon M.
Tokushima T.
Senba Y.
Kamimori K.
Okumura H.
Shimizu Y.
Thomas A.-L.
Millie P.
Koyano I.
Ueda K.
Source Title
Physical review A
Volume 63
Issue 4
Start Page 042705-1
End Page 042705-5
Abstract
The vibrational structure of the O1s[-1]2b2 core-excited state of H2O is observed and ascribed to the mixture of symmetric stretching and bending motions with a1 symmetry. The formation of H2+ is found to increase linearly with an increase in energy stored in the nuclear motion of the O1s[-1]2b2 state, demonstrating that this dissociation channel is mediated by the nuclear motion in the core-excited state. The reaction pathway to the H2+ formation along the Auger final state of H2O+, mediated by the nuclear motion before the Auger decay, is discussed with the help of ab initio potential surfaces of the Auger final states.
NDC
Physics [ 420 ]
Language
eng
Resource Type journal article
Publisher
The American Physical Society
Date of Issued 2001-04
Rights
Copyright (c) 2001 The American Physical Society
Publish Type Version of Record
Access Rights open access
Source Identifier
[ISSN] 1050-2947
[DOI] http://dx.doi.org/10.1103/PhysRevA.63.042705 isVersionOf