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Multi-frequency telecom fibered laser system for potassium laser cooling

Atomic Physics 2021-12-01 v1 Quantum Gases Optics Quantum Physics

Abstract

We describe a compact and versatile multi-frequency laser system for laser-cooling potassium atoms, by frequency doubling a fiber-optic telecom beam (1534\simeq 1534 or 15401540~nm). Low-power fiber-based telecom lasers and components generate a single beam containing the cooling and repumper half frequencies, subsequently amplified by high-power amplifier. A final free-space SHG stage generates a single beam with typically 2.5 W at quasi-resonant frequencies (767\simeq 767 or 770770~nm) with high-quality mode and ready for laser cooling. This allowed to trap up to 4×1094\times10^9 41^{41}K atoms with fast loading times (2.5 s) at sub-Doppler temperatures of 16~μ\muK. This opens promising perspectives towards versatile and transportable ultracold atom setups.

Keywords

Cite

@article{arxiv.2109.03864,
  title  = {Multi-frequency telecom fibered laser system for potassium laser cooling},
  author = {Charbel Cherfan and Maxime Denis and Denis Bacquet and Michel Gamot and Samir Zemmouri and Isam Manai and Jean-François Clément and Jean-Claude Garreau and Pascal Szriftgiser and Radu Chicireanu},
  journal= {arXiv preprint arXiv:2109.03864},
  year   = {2021}
}
R2 v1 2026-06-24T05:48:09.345Z