English

Two-dimensional magneto-optical trap as a source for cold strontium atoms

Atomic Physics 2018-04-04 v3 Quantum Gases

Abstract

We report on the realization of a transversely loaded two-dimensional magneto-optical trap serving as a source for cold strontium atoms. We analyze the dependence of the source's properties on various parameters, in particular the intensity of a pushing beam accelerating the atoms out of the source. An atomic flux exceeding 109atoms/s10^9\,\mathrm{atoms/s} at a rather moderate oven temperature of 500C500\,^\circ\mathrm{C} is achieved. The longitudinal velocity of the atomic beam can be tuned over several tens of m/s by adjusting the power of the pushing laser beam. The beam divergence is around 6060 mrad, determined by the transverse velocity distribution of the cold atoms. The slow atom source is used to load a three-dimensional magneto-optical trap realizing loading rates up to 109atoms/s10^9\,\mathrm{atoms/s} without indication of saturation of the loading rate for increasing oven temperature. The compact setup avoids undesired effects found in alternative sources like, e.g., Zeeman slowers, such as vacuum contamination and black-body radiation due to the hot strontium oven.

Keywords

Cite

@article{arxiv.1709.00790,
  title  = {Two-dimensional magneto-optical trap as a source for cold strontium atoms},
  author = {Ingo Nosske and Luc Couturier and Fachao Hu and Canzhu Tan and Chang Qiao and Jan Blume and Y. H. Jiang and Peng Chen and Matthias Weidemüller},
  journal= {arXiv preprint arXiv:1709.00790},
  year   = {2018}
}
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