High-Flux Cold Ytterbium Atomic Beam Source Using Two-Dimensional Laser Cooling with Intercombination Transition
Abstract
We demonstrate a high-flux and low transverse temperature atomic beam of ytterbium by applying two-dimensional cooling using the intercombination transition to the cold atomic beam produced by the dipolar-allowed transition. The optimized transverse temperature of and an atomic flux of are obtained for the atomic beam whose longitudinal velocity is . The transverse temperature is maintained below , while the flux is above in the longitudinal velocity range of . We also discuss the feasibility of further narrowing the transverse momentum width to less than the recoil momentum using the momentum-selective optical transition between the ground state and the long-lived metastable state. The transverse momentum width of our atomic beam, which is narrower than 5.7 times the recoil momentum, is a good starting point for the proposed method.
Cite
@article{arxiv.2104.11481,
title = {High-Flux Cold Ytterbium Atomic Beam Source Using Two-Dimensional Laser Cooling with Intercombination Transition},
author = {Toshiyuki Hosoya and Ryotaro Inoue and Tomoya Sato and Mikio Kozuma},
journal= {arXiv preprint arXiv:2104.11481},
year = {2022}
}
Comments
7 pages, 6 figures