Skip to main content
U.S. Department of Energy
Office of Scientific and Technical Information

Asymmetry parameters for CO{sub 2} around the C {ital K} and O {ital K} ionization edges from the anisotropy of the ion distributions

Journal Article · · Physical Review A
; ;  [1]
  1. Electrotechnical Laboratory, 1-1-4, Umezono, Tsukuba-shi, Ibaraki 305 (Japan)

Slightly negative {beta} values were found below the C {ital K} edge, rising to a maximum value of 0.9 at the {sigma}{sub {ital u}}{sup *} shape resonance at 312.2 eV. Strongly positive {beta} values were found just below the O {ital K} edge and were assigned to a transition of an O 1{ital s} electron to an {ital s}-type Rydberg orbital coupled with a shape resonance in the {sigma}{sub {ital g}} ionization channel. Two maxima were observed in the {beta} values above the O {ital K} edge and assigned to shape resonances in the {sigma}{sub {ital g}} and {sigma}{sub {ital u}} continuum channels. The lower energy resonance in the {sigma}{sub {ital g}} channel was found at 542.5 eV and the position of the higher energy shape resonance in the {sigma}{sub {ital u}} channel was found to be 560 eV. The importance of using mass-resolved ion spectra to determine the {beta} parameters for molecules which undergo a change in geometry upon excitation of a core electron is highlighted by a comparison of these results with the symmetry-resolved ion yield spectra of CO{sub 2}.

OSTI ID:
55111
Journal Information:
Physical Review A, Journal Name: Physical Review A Journal Issue: 6 Vol. 51; ISSN 1050-2947; ISSN PLRAAN
Country of Publication:
United States
Language:
English

Similar Records

Photoelectron spectra of N{sub 2} +: Rotational line profiles studied with He;I{endash}excited angle-resolved spectroscopy and with synchrotron radiation
Journal Article · Sun Feb 28 23:00:00 EST 1999 · Physical Review A · OSTI ID:328570

Splitting of resonant Raman x-ray peaks near the [ital M][sub IV] and [ital M][sub V] edges of uranium
Journal Article · Sun Mar 14 23:00:00 EST 1993 · Physical Review, B: Condensed Matter; (United States) · OSTI ID:6763122

Superexcited states of oxygen studied by fast-electron impact
Journal Article · Mon Feb 28 23:00:00 EST 2005 · Physical Review. A · OSTI ID:20650407