Theoretical spectroscopy and metastability of BeS and its cation |
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Authors: | T. Larbi F. Khadri H. Ghalila S. Lahmar M. Hochlaf |
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Affiliation: | 1. Laboratoire de Spectroscopie Atomique, Moléculaire et Applications (LSAMA), Université Tunis El Manar, Faculté des Sciences de Tunis, Département de Physique, 1060, Tunisia;2. Laboratoire Modélisation et Simulation Multi Echelle Université Paris-Est, MSME UMR 8208 CNRS, 5 bd Descartes, 77454 Marne-la-Vallée, France |
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Abstract: | Multiconfiguration self-consistent field and multiconfiguration reference interaction including the Davidson’s correction techniques were employed to calculate the potential energy curves (PECs) of the BeS/BeS+ electronic states correlating to the 4/5 lowest dissociation limits. After nuclear motion treatment, we deduced reliable spectroscopic data for the neutral and cationic bound states. For BeS, the transition moments and spin-orbit couplings were also evaluated and used later with the PECs to deduce the rovibronic transition probabilities and the radiative lifetimes in the low-lying states, and to investigate the unimolecular decomposition processes of BeS (X1Σ+, A1Π, 3Σ+ and B1Σ+) leading to Be(1Sg) + S(3Pg). The prominent mechanism is a spin-orbit induced predissociation via the repulsive BeS(13Σ−) state. Finally, we give the single ionization spectrum of BeS (X1Σ+) populating the BeS+ (X2Π, 12Σ−, 12Σ+, 12Δ, 22Σ+, 22Π and 32Π) electronic states. The adiabatic ionisation energy of BeS is estimated to be ∼9.15 eV. |
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Keywords: | Ab initio calculations Electronic structure Spectroscopy Diatomics |
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