Analysis of Photoassociation Spectra for Giant Helium Dimers
J. Leonard, A. P. Mosk, M. Walhout, P. Van Der Straten, M. Leduc, C. Cohen-Tannoudji
Abstract
We perform a theoretical analysis to interpret the spectra of purely long-range helium dimers produced by photoassociation (PA) in an ultra-cold gas of metastable helium atoms. The experimental spectrum obtained with the PA laser tuned closed to the 23S1 23P0 atomic line has been reported in a previous Letter. Here, we first focus on the corrections to be applied to the measured resonance frequencies in order to infer the molecular binding energies. We then present a calculation of the vibrational spectra for the purely long-range molecular states, using adiabatic potentials obtained from perturbation theory. With retardation effects taken into account, the agreement between experimental and theoretical determinations of the spectrum for the 0u+ purely long-range potential well is very good. The results yield a determination of the lifetime of the 23P atomic state.
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