arXiv · 1609.05659
Radiative cooling of H3O+ and its deuterated isotopologues
Abstract
In conjunction with ab initio potential energy and dipole moment surfaces for the electronic ground state, we have made a theoretical study of the radiative lifetimes for the hydronium ion H$_3$O$^{+}$ and its deuterated isotopologues. We compute the ro-vibrational energy levels and their associated wavefunctions together with Einstein coefficients for the electric dipole transitions. A detailed analysis of the stability of the ro-vibrational states have been carried out and the longest-living states of the hydronium ions have been identified. We report estimated radiative lifetimes and cooling functions for temperatures $<$ 200 K. A number of long-living meta-stable states are identified, capable of population trapping.
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Vladlen V. Melnikov, Sergei N. Yurchenko, Jonathan Tennyson, Per Jensen. 2016-09-19. Radiative cooling of H3O+ and its deuterated isotopologues. https://doi.org/10.1039/c6cp04661d
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