Laser cooling and electronic structure studies of BaI molecule

SSRN Electronic Journal(2022)

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Abstract
Literature shows a lack of laser cooling studies of Barium Monohalide (BaI) diatomic molecules. In this work, we present a series of calculations using the ab initio complete active space self-consistent field (CASSCF)/MRCI approach with Davidson correction to fill out this gap. The adiabatic potential energy curves, the static dipole moment curves, and the spectroscopic parameters have been investigated for the bound low-lying electronic states. The ro-vibrational constants E-v, B-v, D-v, and the turning points R-min and R(max )were also examined for the surveyed electronic states. The calculation of the transition dipole moment curves for the X-2 sigma(+)- (1)2 Pi transition, the Franck-Condon factor, the radiative lifetime, the branching ratio, the laser cooling scheme, and the buffer gas study prove that the molecule BaI is a good candidate for a Doppler laser cooling experiment.
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Key words
Ab initio calculation,Electronic structure,Spectroscopic constants,Potential energy curves,Dipole moments,Franck-Condon factor,Rovibrational calculation,Laser cooling
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