Characterisation of the $b^3Σ^+, v=0$ State and Its Interaction with the $A^1Π$ State in Aluminium Monofluoride (2008.05210v1)
Abstract: Recently, we determined the detailed energy level structure of the $X1\Sigma+$, $A1\Pi$ and $a3\Pi$ states of AlF that are relevant to laser cooling and trapping experiments. Here, we investigate the $b3\Sigma+, v=0$ state of the AlF molecule. A rotationally-resolved (1+2)-REMPI spectrum of the $b3\Sigma+, v'=0 \leftarrow a3\Pi, v''=0$ band is presented and the lifetime of the $b3\Sigma+, v=0$ state is measured to be 190(2)~ns. Hyperfine-resolved, laser-induced fluorescence spectra of the $b3\Sigma+, v'=0 \leftarrow X1\Sigma+, v''=1$ and the $b3\Sigma+, v'=0 \leftarrow a3\Pi, v''=0$ bands are recorded to determine fine- and hyperfine structure parameters. The interaction between the $b3\Sigma+, v=0$ and the nearby $A1\Pi$ state is studied and the magnitude of the spin-orbit coupling between the two electronic states is derived using three independent methods to give a consistent value of 10(1)~cm${-1}$. The triplet character of the $A$ state causes an $A\rightarrow a$ loss from the main $A-X$ laser cooling cycle below the 10${-6}$ level.
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