Published February 1996 | Version v1
Journal article

Electron excitation of optically-allowed transitions in CO2, SF6, CO, F2, and SO2

  • 1. Department of Physics and Center for Theoretical Studies of Physical Systems, Clark Atlanta University, Atlanta, Georgia 30314 (United States)

Description

Dipole-allowed transitions for the inner-shell C1s(2σg)→2Πu in CO2 and 2t1u→6a1g, 2t1u→2t2g, and 2t1u→4eg in SF6; for X1Σ+→A1Π and X1Σ+→C1Σ+ in CO; for excitation of F2I1Σ+u and the electronic states of SO2 are investigated at small scattering angles through the generalized oscillator strength using a recent universal function by A. Z. Msezane and I. A. Sakmar. The results cover the electron energy between 20 eV and 2.5 keV. Good agreement with existing experimental data and calculations is obtained for the inner-shell excitation of CO2 and the 2t1u-6a1g transition in SF6, implying that dynamic effects are unimportant at small scattering angles. The unmeasured differential cross sections (DCS close-quote s) in the angular range of about 0 degree ≤θ≤2 degree are found to contribute significantly to the integral cross sections, ranging from 40% to 69% at 300 and 500 eV in CO. The universal function approach provides an independent check of small-angle theoretical and experimental DCS close-quote s. Given reliable small-angle DCS close-quote s, the universal formula can be used to obtain reasonable values of optical oscillator strengths. Dynamic effects can also be investigated and are shown to be significant in the fourth positive band of CO at 500 eV, even near zero scattering angles. In contrast, dynamic effects are unimportant in the inner-shell excitation of CO2 at 1290 eV, up to large momentum-transfer-squared values, even though for the transition the first Born approximation should not be applicable

Additional details

Publishing Information

Journal Title
Physical Review. A
Journal Volume
53
Journal Issue
2
Journal Page Range
p. 806-817.
ISSN
1050-2947
CODEN
PLRAAN