Zeeman-Sisyphus Deceleration of Molecular Beams
Atomic Physics
2022-01-06 v2 Chemical Physics
Abstract
We present a robust, continuous molecular decelerator that employs high magnetic fields and few optical pumping steps. CaOH molecules are slowed, accumulating at low velocities in a range sufficient for loading both magnetic and magneto-optical traps. During the slowing, the molecules scatter only 7 photons, removing around 8 K of energy. Because large energies can be removed with only a few spontaneous radiative decays, this method can be applied to nearly any paramagnetic atomic or molecular species, opening a general path to trapping of complex molecules.
Keywords
Cite
@article{arxiv.2109.03067,
title = {Zeeman-Sisyphus Deceleration of Molecular Beams},
author = {Benjamin L. Augenbraun and Alexander Frenett and Hiromitsu Sawaoka and Christian Hallas and Nathaniel B. Vilas and Abdullah Nasir and Zack D. Lasner and John M. Doyle},
journal= {arXiv preprint arXiv:2109.03067},
year = {2022}
}
Comments
6 pages, 4 figures. Slightly revised text and updated citations