Optically enhanced discharge excitation and trapping of $^{39}Ar$
Abstract
We report on a two-fold increase of the loading rate in an atom trap by enhancing the generation of metastable atoms in a discharge source. Additional atoms in the metastable level (Paschen notation) are obtained via optically pumping both the - transition at 801 nm and the - transition at 923 nm. By solving the master equation for the corresponding six-level system, we identify these two transitions to be the most suitable ones and encounter a transfer process between and when pumping both transitions simultaneously. We calculate the previously unknown frequency shifts of the two transitions in and confirm the results with trap loading measurements. The demonstrated increase in the loading rate enables a corresponding decrease in the required sample size, uncertainty and measurement time for dating, a significant improvement for applications such as dating of ocean water and alpine ice cores.
Cite
@article{arxiv.2206.11089,
title = {Optically enhanced discharge excitation and trapping of $^{39}Ar$},
author = {Y. -Q. Chu and Z. -F. Wan and F. Ritterbusch and W. -K. Hu and J. -Q. Gu and S. -M. Hu and Z. -H. Jia and W. Jiang and Z. -T. Lu and L. -T. Sun and A. -M. Tong and J. S. Wang and G. -M. Yang},
journal= {arXiv preprint arXiv:2206.11089},
year = {2022}
}
Comments
arXiv admin note: text overlap with arXiv:2005.11056