AI Article Synopsis

  • The study investigates the electronic structure of the YbBr molecule using advanced MRCI calculations with Davidson correction, focusing on adiabatic potential energy curves and various spectroscopic constants.
  • It analyzes the ionic character of YbBr at equilibrium and explores 30 low-lying states, including relevant spin-orbit effects and transition dipole moments for electronic states.
  • The research also computes vibrational parameters and Franck-Condon factors, along with radiative lifetimes, reporting many findings as novel contributions to the literature, with results aligning well with previous experimental data.

Article Abstract

This work presents an electronic structure study employing multireference configuration interaction MRCI calculations with Davidson correction (+Q) of the ytterbium monobromide YbBr molecule. Adiabatic potential energy curves (PECs), dipole moment curves, and spectroscopic constants (such as , ω, , , , and μ) of the low-lying bound electronic states are determined. The ionic character of the YbBr molecule at the equilibrium position is also discussed. With spin-orbit effects, 30 low-lying states in Ω = 1/2, 3/2, 5/2, 7/2 representation are probed. The electronic transition dipole moment is calculated between the investigated states and then used to determine transition coefficients, for example, the Einstein coefficient of spontaneous emission and emission oscillator strength . Vibrational parameters such as , , , , and of the low vibrational levels of different bound states in both Λ and Ω representations are also calculated. Upon calculating the Franck-Condon factors, they are found to be perfectly diagonal between three couples of low-lying excited states. Vibrational Einstein coefficients and radiative lifetimes are computed as well for the lowest vibrational transitions. Most of the data reported in this work are presented here for the first time in the literature. Very good accordance is obtained in comparison with the previously reported constants by means of experimental methods.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6756743PMC
http://dx.doi.org/10.1021/acsomega.9b01759DOI Listing

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