Photoassociation of spin polarized Chromium
Abstract
We report the homonuclear photoassociation (PA) of ultracold atoms in an optical dipole trap. This constitutes the first measurement of PA in an element with total electron spin . Although Cr, with its ground and excited states, is expected to have a complicated PA spectrum we show that a spin polarized cloud exhibits a remarkably simple PA spectrum when circularly polarized light is applied. Over a scan range of 20 GHz below the asymptote we observe two distinct vibrational series each following a LeRoy-Bernstein law for a potential with excellent agreement. We determine the coefficients of the Hund's case c) relativistic adiabatic potentials to be -1.830.02 a.u. and -1.460.01a.u.. Theoretical non-rotating Movre-Pichler calculations enable a first assignment of the series to and potential energy curves. In a different set of experiments we disturb the selection rules by a transverse magnetic field which leads to additional PA series.
Cite
@article{arxiv.1512.04378,
title = {Photoassociation of spin polarized Chromium},
author = {Jahn Rührig and Tobias Bäuerle and Paul S. Julienne and Eite Tiesinga and Tilman Pfau},
journal= {arXiv preprint arXiv:1512.04378},
year = {2016}
}