Structural and spectroscopic study of the LiRb molecule beyond the Born-Oppenheimer approximation. - Université Toulouse III - Paul Sabatier - Toulouse INP Accéder directement au contenu
Article Dans Une Revue Journal of Physical Chemistry A Année : 2012

Structural and spectroscopic study of the LiRb molecule beyond the Born-Oppenheimer approximation.

I. Jendoubi
  • Fonction : Auteur
H. Berriche
  • Fonction : Auteur
H. Ben Ouada
  • Fonction : Auteur
Florent X. Gadéa

Résumé

Adiabatic and diabatic potential energy curves and the permanent and transition dipole moments of the low-lying electronic states of the LiRb molecule dissociating into Rb(5s, 5p, 4d, 6s, 6p, 5d, 7s, 6d) + Li(2s, 2p) have been investigated. The molecular calculations are performed with an ab initio approach based on nonempirical pseudopotentials for Rb(+) and Li(+) cores, parametrized l-dependent core polarization potentials and full configuration interaction calculations. The derived spectroscopic constants (R(e), D(e), T(e), ω(e), ω(e)x(e), and B(e)) of the ground state and lower excited states are in good agreement with the available theoretical works. However, the 8-10(1)Σ(+), 8-10(3)Σ(+), 6(1,3)Π, and 3(1,3)Δ excited states are studied for the first time. In addition, to the potential energy, accurate permanent and transition dipole moments have been determined for a wide interval of internuclear distances. The permanent dipole moment of LiRb has revealed ionic characters both relating to electron transfer and yielding Li(-)Rb(+) and Li(+)Rb(-) arrangements. The diabatic potential energy for the (1,3)Σ(+), (1,3)Π, and (1,3)Δ symmetries has been performed for this molecule for the first time. The diabatization method is based on variational effective Hamiltonian theory and effective metric, where the adiabatic and diabatic states are connected by an appropriate unitary transformation.

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Dates et versions

hal-00841510 , version 1 (05-07-2013)

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I. Jendoubi, H. Berriche, H. Ben Ouada, Florent X. Gadéa. Structural and spectroscopic study of the LiRb molecule beyond the Born-Oppenheimer approximation.. Journal of Physical Chemistry A, 2012, 116 (11), pp.2945-60. ⟨10.1021/jp209106w⟩. ⟨hal-00841510⟩
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