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Fourier-transform spectroscopy and deperturbation analysis of the spin-orbit coupled A 1Σ+ and b 3Π states of KRb

  • University of Latvia
  • Lomonosov Moscow State University

Research output: Contribution to journalArticlepeer-review

18 Citations (Scopus)

Abstract

Fourier-transform A1Σ+ - b3Π → X1Σ+ laser-induced fluorescence spectra were recorded for the natural mixture of 39,41K85,87Rb isotopologues produced in a heatpipe oven. Overall 4200 rovibronic term values of the spin-orbit coupled A1Σ+ and b3Π states were determined with an uncertainty of about 0.01 cm-1 in the energy range [10 850, 14 200] cm-1 covering rotational quantum numbers J' ∈ [3, 280]. Direct deperturbation analysis of the A ∼ b complex performed within the framework of the A1Σ+ ∼ b3ΠΩ=0,1,2 coupled-channel approach reproduced experimental data with a standard deviation of 0.004 cm-1. Initial parameters of the internuclear potentials and spin-orbit coupling functions along with the relevant transition dipole moments were obtained by performing the quasi-relativistic electronic structure calculations. The mass-invariant molecular parameters obtained from the fit were used to predict energy and radiative properties of the A ∼ b complex for low J levels of 39K85Rb as well as for 41K87Rb isotopologues, allowing us to identify the most reasonable candidates for the stimulated Raman transitions between the initial uppermost vibrational levels of the a3Σ+ and X1Σ+ states, the intermediate levels of the A ∼ b complex, and the lowest absolute ground X1Σ+(v = 0, J = 0) state.

Original languageEnglish
Article number144310
JournalJournal of Chemical Physics
Volume144
Issue number14
DOIs
Publication statusPublished - 14 Apr 2016

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