English

Characterizing the Zeeman slowing force for $^{40}$Ca$^{19}$F molecules

Atomic Physics 2021-09-22 v2

Abstract

In this paper we investigate the feasibility of Zeeman slowing calcium monofluoride (CaF) molecules originating from a cryogenic buffer gas cell. We measure the A2Π1/2(v=0,J=12)X2Σ1/2(v=0,N=1)A^2\Pi_{1/2} (v=0, J=\frac{1}{2}) - X^2\Sigma_{1/2} (v=0, N=1) hyperfine spectrum of CaF in the Paschen-Back regime and find excellent agreement with theory. We then investigate the scattering rate of the molecules in a molecular Zeeman slower by illuminating them with light from a 10mW broad repumper and a 10mW multi-frequency slowing laser. By comparing our results to theory we can calculate the photon scattering rate at higher powers, leading to a force profile for Zeeman slowing. We show results from a simple 1D simulation demonstrating that this force is both strong and narrow enough to lead to significant compression, and slowing of the molecules to trappable velocities.

Cite

@article{arxiv.2104.08235,
  title  = {Characterizing the Zeeman slowing force for $^{40}$Ca$^{19}$F molecules},
  author = {P. Kaebert and M. Stepanova and T. Poll and M. Petzold and S. Xu and M. Siercke and S. Ospelkaus},
  journal= {arXiv preprint arXiv:2104.08235},
  year   = {2021}
}

Comments

17 pages, 5 figures

R2 v1 2026-06-24T01:15:12.074Z