Precise atomic radiative lifetime via photoassociative spectroscopy of ultracold lithium
Publication date
1995
Authors
McAlexander, W.I.
Abraham, E.R.I.
Ritchie, N.W.M.
Williams, C.J.
Stoof, H.T.C.
Hulet, R.G.
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Article
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Abstract
We have obtained spectra of the high-lying vibrational levels of the 13Σg+ state of 6Li2 via photoassociation of ultracold 6Li atoms confined in a magneto-optical trap. The 13Σg+ state of the diatomic molecule correlates to a 2S1/2 state atom plus a 2P1/2 state atom. The long-range part of the molecular interaction potential for this state depends on the 2P atomic radiative lifetime. By calculating the energy eigenvalues of a model potential for the 13Σg+ state and fitting them to the experimentally measured vibrational levels, we have extracted a value for the 2P lifetime of 26.99±0.16 ns. The precision is currently limited by the accuracy of a region of the model potential provided by ab initio calculations.