A scaling law for the electron-impact electronic excitation cross sections of vibrationally excited diatomic molecules is derived and applied to the X l~g\_~ B i E+ transitions in hydrogen and deuterium.
The vibrational excitation of diatomic molecules by electron impact
โ Scribed by S.A. Salvini; D.G. Thompson
- Publisher
- Elsevier Science
- Year
- 1981
- Tongue
- English
- Weight
- 544 KB
- Volume
- 22
- Category
- Article
- ISSN
- 0010-4655
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โฆ Synopsis
Nature of physical problem
The scattering of slow electrons by diatomic molecules, Operating system: HASP producing vibrational excitation.
Programming language: FORTRAN IV Method of solution K matrices from the scattering problem are used to obtain High speed storage required: 118 Kbytes differential cross sections.
Number of bits in a word: 64 Restrictions in the complexity of the problem
Two open vibrational channels; ten partial waves for each Overlay structure: none vibrational channel.
๐ SIMILAR VOLUMES
The urIu5ud. strong ponks in v~brationnlly inclatrc total cross sections ofpol,n molecules by clatron collismns that appear e\pcrinlcntally Just Jt the opting for such channel\ are evnmmed from ;1 IhcoretlcaJ viewpoint and attributed to strong linnl stdtc' mturactmn contnbutlonc from the S-wave comp