Magneto-Optical Trapping of a Metal Hydride Molecule
Atomic Physics
2025-12-30 v1 Quantum Gases
Quantum Physics
Abstract
We demonstrate a three-dimensional magneto-optical trap (MOT) of a metal hydride molecule, CaH. We are able to scatter photons with vibrational loss covered up to vibrational quantum number . This allows us to laser slow the molecular beam near zero velocity with a "white-light" technique and subsequently load it into a radio-frequency MOT. The MOT contains 230(40) molecules, limited by beam source characteristics and predissociative loss of CaH. The temperature of the MOT is below one millikelvin. The predissociative loss mechanism could, in turn, facilitate controlled dissociation of the molecule, offering a possible route to optical trapping of hydrogen atoms for precision spectroscopy.
Cite
@article{arxiv.2512.22350,
title = {Magneto-Optical Trapping of a Metal Hydride Molecule},
author = {Jinyu Dai and Benjamin Riley and Qi Sun and Debayan Mitra and Tanya Zelevinsky},
journal= {arXiv preprint arXiv:2512.22350},
year = {2025}
}
Comments
6+1 pages, 5 figures