English

Inverted crossover resonance aiding laser cooling of $^{171}$Yb

Atomic Physics 2016-05-31 v4

Abstract

We observe an inverted crossover resonance in π\pi-driven four-level systems, where FF=0,+1F'-F=0,+1. The signal is observed through saturated absorption spectroscopy of the (6s2)(6s^{2}) 1S0^{1}S_{0} - (6s6p)(6s6p) 3P1^{3}P_{1} transition in 171^{171}Yb, where the nuclear spin I=1/2I=1/2. The enhanced absorption signal is used to generate a dispersive curve for 556 nm laser frequency stabilisation and the stabilised light cools 171^{171}Yb atoms in a two-stage magneto-optical trap, achieving temperatures of 20 μ\muK. The Doppler-free spectroscopy scheme is further used to measure isotopic frequency shifts and hyperfine separations for the intercombination line in ytterbium.

Keywords

Cite

@article{arxiv.1603.00970,
  title  = {Inverted crossover resonance aiding laser cooling of $^{171}$Yb},
  author = {J. J. McFerran},
  journal= {arXiv preprint arXiv:1603.00970},
  year   = {2016}
}