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 pro
Non-adiabatic effects in low-energy electron scattering by molecules and molecular ions
β Scribed by F.I. Dalidchik
- Publisher
- Elsevier Science
- Year
- 1985
- Tongue
- English
- Weight
- 303 KB
- Volume
- 119
- Category
- Article
- ISSN
- 0009-2614
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β¦ Synopsis
A new method for the description of non-adiabatnc erfecfi in lou-energy rcsonanl rleclron sca~rcrrng 1s developed. Analylic expressions Tar the elasric and inelastic cross seclions are oblamed wIthin the framework of the oscillalor model The possibilities of the method are illuslrared for resonanl elec~on scattering by molecules possessing B v~rrual electronic level and by posilive molecular ions
π SIMILAR VOLUMES
Numerical calculation shows that interference between single scattering and double scattering reduces the independentatom-model cross section by l/3 at 100 eV and l/7 at 5OOeV for Nz and by somewhat larger fractions for P4.
## Abstract Lowβmolecularβweight (LMW) RNA profiles, which include ribosomal and transfer RNA molecules with similar small sizes, are molecular signatures of microorganisms with a great potential in microbial identification. The greatest resolution of these profiles was achieved by staircase electr