English

Photoassociation of spin polarized Chromium

Atomic Physics 2016-03-09 v2 Quantum Physics

Abstract

We report the homonuclear photoassociation (PA) of ultracold 52Cr{}^{52}\mathrm{Cr} atoms in an optical dipole trap. This constitutes the first measurement of PA in an element with total electron spin S~>1\tilde{S}>1. Although Cr, with its 7S3{}^{7}\mathrm{S}_{3} ground and 7P4,3,2{}^{7}\mathrm{P}_{4,3,2} 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 7P3{}^{7}\mathrm{P}_{3} asymptote we observe two distinct vibrational series each following a LeRoy-Bernstein law for a C3/R3C_3 / R^{3} potential with excellent agreement. We determine the C3C_3 coefficients of the Hund's case c) relativistic adiabatic potentials to be -1.83±\pm0.02 a.u. and -1.46±\pm0.01a.u.. Theoretical non-rotating Movre-Pichler calculations enable a first assignment of the series to Ω=6u\Omega=6_u and 5g5_g 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.

Keywords

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}
}