A theory of dissociative recombination has been developed which makes possible an investigation of this process in connection with the problem of scattering of slow electrons by molecular ions. The simultaneous influence of direct (non-reson~ce) interaction and ~homogeReit~ of the efectron continuum
The continued fraction method in the theory of slow electron scattering by molecules and molecular ions
β Scribed by A.E. Bodrov; F.I. Dalidchik
- Publisher
- Elsevier Science
- Year
- 1986
- Tongue
- English
- Weight
- 401 KB
- Volume
- 130
- Category
- Article
- ISSN
- 0009-2614
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β¦ Synopsis
Analytical possibilities of the continued fraction method are demonstrated by solving two problems connected with a description of slow electron resonance scattering by positive molecular ions. Using the rotation adiabatic approximation, exact solutions of the multiquantum vibrational transition problem have been found for the fractional-linear approximation of the vibrational adiabatic K matrix. The equivalence of different formulations of the multichannel quantum defect method has been shown. The existence of autoionization states with anomalously small decay widths has been established. The role of simultaneous rotational-vibrational transitions in molecular Rydberg spectra and autoionization is analyzed.
π SIMILAR VOLUMES
In this paper, we discuss the validity of our earlier derivation of a theory of molecular electron aftinities and ionization potentials\_ We show how one can improve upon our original derivation, which was not entirely consistent. by iteratively calculating both the ion and neutral molecule wavefun
In the beginning of the modern quantum theory of atomic and molecular spectra, the semi-empirical methods were exceedingly successful in explaining the structure of the spectra and their general properties, and it was hence somewhat of a surprise that, when the fundamental semi-empirical parameters