Non-radiative inelastic processes in lithium-helium ion-atom collisions

Aims. The aims are to estimate efficiencies of non-radiative inelastic processes in lithium-helium ion-atom collisions and to compare them to those for radiative processes. Methods. Non-radiative inelastic cross-sections and rate coefficients for different lithium-helium ion-atom collisions are esti...

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Veröffentlicht in:Astronomy and astrophysics (Berlin) 2014-05, Vol.565, p.np-np
Hauptverfasser: Belyaev, Andrey K., Augustovičová, Lucie, Soldán, Pavel, Kraemer, Wolfgang P.
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Sprache:eng
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Zusammenfassung:Aims. The aims are to estimate efficiencies of non-radiative inelastic processes in lithium-helium ion-atom collisions and to compare them to those for radiative processes. Methods. Non-radiative inelastic cross-sections and rate coefficients for different lithium-helium ion-atom collisions are estimated by means of the recently proposed branching probability current method, which is based on the accurate ab initio adiabatic Born-Oppenheimer potentials that have been recently calculated for the low-lying 1,3Σ+ and 1,3Π states of the LiHe+ ion. Results. It is shown that at low temperatures the radiative depopulation in Li+ + He and Li + He+ collisions dominates over the non-radiative processes, while in Li+ + He(2s 3S) collisions the non-radiative processes dominate over the radiative association at temperatures above 3000 K, which can be expected to have some influence on depopulations of metastable He in high temperature astrophysical environments.
ISSN:0004-6361
1432-0746
DOI:10.1051/0004-6361/201423578