English

Establishing a nearly closed cycling transition in a polyatomic molecule

Atomic Physics 2021-06-16 v3

Abstract

We study optical cycling in the polar free radical calcium monohydroxide (CaOH) and establish an experimental path towards scattering \sim10410^4 photons. We report rovibronic branching ratio measurements with precision at the 104\sim10^{-4} level and observe weak symmetry-forbidden decays to bending modes with non-zero vibrational angular momentum. Calculations are in excellent agreement with these measurements and predict additional decay pathways. Additionally, we perform high-resolution spectroscopy of the X~2Σ+(1200)\widetilde{\text{X}}\,^2\Sigma^+(12^00) and X~2Σ+(1220)\widetilde{\text{X}}\,^2\Sigma^+(12^20) hybrid vibrational states of CaOH. These advances establish a path towards radiative slowing, 3D magneto-optical trapping, and sub-Doppler cooling of CaOH.

Keywords

Cite

@article{arxiv.2006.01769,
  title  = {Establishing a nearly closed cycling transition in a polyatomic molecule},
  author = {Louis Baum and Nathaniel B. Vilas and Christian Hallas and Benjamin L. Augenbraun and Shivam Rava and Debayan Mitra and John M. Doyle},
  journal= {arXiv preprint arXiv:2006.01769},
  year   = {2021}
}
R2 v1 2026-06-23T16:00:04.033Z