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Updated: Jun 2, 2026

Spatial Separation of Molecular Conformers and Clusters
Published on: January 9, 2014
Mutual capture of dipolar molecules at low and very low energies. II. Numerical study
M Auzinsh1, E I Dashevskaya, I Litvin
1Department of Physics, University of Latvia, Riga, Latvia.
Abstract:
The low-energy rate coefficients of capture of two identical dipolar polarizable rigid rotors in their lowest nonresonant (j(1) = 0 and j(2) = 0) and resonant (j(1) = 0, 1 and j(2) = 1, 0) states are calculated accurately within the close-coupling (CC) approach. The convergence of the quantum rate coefficients to their quantum-classical counterparts is studied. A comparison of the present accurate numerical with approximate analytical results (Nikitin, E. E.; Troe, J. J. Phys. Chem. A 2010, 114, 9762) indicates a good performance of the previous approach which was based on the interpolation between s-wave fly wheel quantal and all-wave classical adiabatic channel limits. The results obtained apply as well to the formation of transient molecular species in the encounter of two atoms at very low collision energy interacting via resonance dipole-dipole interaction.
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