Rotational laser spectroscopy of the X1Σg+→ B1Πu transition of Rb2 molecule in a supersonic beam: As good as it gets
David Rodríguez Fernández, Manuel Alejandro Lefrán Torres, Jaime Javier Borges Márquez, Marcos Roberto Cardoso, Amrendra Pandey, Romain Vexiau, Olivier Dulieu, Nadia Bouloufa-Maafa, Luis Gustavo Marcassa
Abstract
High-resolution laser spectroscopy of the 85Rb2, 85Rb87Rb, and 87Rb2 isotopologues has been performed in a supersonic molecular beam using a continuous-wave (cw) tunable diode laser. A total of 958 rovibronic transitions were recorded up to 7~cm-1 below the vibrational band heads of the X1Σg+(v''=0)→ B1Πu(v'=1,2) and X1Σg+(v''=1)→ B1Πu(v'=1) bands, with a spectral resolution of 3.3×10-4~cm-1. Although restricted to the v'=1 and v'=2 vibrational levels of the excited B1Πu state, the measurements extend previous work by Amiot and Vergès [Chemical Physics Letters 274, 91 (1997)] through substantially higher resolution and dense low-J' rotational data for all three isotopologues. A global least-squares analysis combining the new and published data, yields improved Dunham coefficients for the excited B1Πu state, significantly refines rotational and rovibrational coupling constants. In addition, the Λ-doubling constants of B1Πu state were determined for the three isotopologues.
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