English

Optically enhanced discharge excitation and trapping of $^{39}Ar$

Atomic Physics 2022-07-13 v3

Abstract

We report on a two-fold increase of the 39Ar^{39}Ar loading rate in an atom trap by enhancing the generation of metastable atoms in a discharge source. Additional atoms in the metastable 1s51s_5 level (Paschen notation) are obtained via optically pumping both the 1s41s_4 - 2p62p_6 transition at 801 nm and the 1s21s_2 - 2p62p_6 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 1s21s_2 and 1s41s_4 when pumping both transitions simultaneously. We calculate the previously unknown frequency shifts of the two transitions in 39Ar^{39}Ar 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 39Ar^{39}Ar dating, a significant improvement for applications such as dating of ocean water and alpine ice cores.

Keywords

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