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.

Editors

Advisors

Supervisors

DOI

Document Type

Article
Open Access logo

License

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.

Keywords

Citation