English

Simple Magneto-Optical and Magnetic Traps for Dysprosium

Atomic Physics 2026-02-11 v1

Abstract

Dysprosium (Dy) is the most magnetic element on the periodic table, making it excellent for studying dipolar atom-atom interactions. We report on a simple Dy MOT that captures atoms directly from the thermal beam using a single diode-laser system to generate the light. Additionally, the atoms are magnetically confined by the quadrupole magnetic field that also facilitates the MOT. The MOT loading time is τb=26 ms\tau_\text{b} = 26~\text{ms}. Atoms can decay to a dark state that is magnetically trapped. The time constant for loading into this magnetic trap is τd=410 ms\tau_\text{d} = 410~\text{ms}. The total magnetically trapped population is 1.14×1051.14\times10^{5} atoms, with 85%85\% residing in the dark states. The magnetically trapped atoms have a temperature of 28 μK28~\mu\text{K}, significantly below the Doppler limit. This population fulfills the requirements for a range of future experiments.

Keywords

Cite

@article{arxiv.2602.09403,
  title  = {Simple Magneto-Optical and Magnetic Traps for Dysprosium},
  author = {Liam Domett-Potts and Lucile Sanchez and Charlotte Hayton and Oscar Stone and Nuttida Kaewart and Piyawat Chatchaichompu and Narupon Chattrapiban and Nithiwadee Thaicharoen and Mikkel F. Andersen},
  journal= {arXiv preprint arXiv:2602.09403},
  year   = {2026}
}

Comments

8 pages, 11 figures

R2 v1 2026-07-01T10:29:08.865Z