English

Electronic level structure of $\mathrm{Th}^+$ in the range of the $^{229m}\mathrm{Th}$ isomer energy

Atomic Physics 2019-06-05 v2

Abstract

Using resonant two-step laser excitation of trapped 232Th+^{232}\mathrm{Th}^+ ions, we observe 166 previously unknown energy levels of even parity within the energy range from 7.8 to 9.8 eV and angular momenta from J=1/2J=1/2 to 7/27/2. We also classify the high-lying levels observed in our earlier experiments by the total angular momentum and perform ab-initio calculations to compare their results with the observed level density. The observed levels can be relevant for the excitation or decay of the 229mTh^{229m}\mathrm{Th} isomeric nuclear state which lies in this energy range. The high density of electronic levels promises a strongly enhanced electronic bridge excitation of the isomer in 229Th+^{229}\mathrm{Th}^+.

Keywords

Cite

@article{arxiv.1902.09256,
  title  = {Electronic level structure of $\mathrm{Th}^+$ in the range of the $^{229m}\mathrm{Th}$ isomer energy},
  author = {David-Marcel Meier and Johannes Thielking and Przemysław Głowacki and Maksim V. Okhapkin and Robert A. Müller and Andrey Surzhykov and Ekkehard Peik},
  journal= {arXiv preprint arXiv:1902.09256},
  year   = {2019}
}

Comments

10 pages, 4 figures, 4 tables; 2 figures updated, 1 reference added, section 5 updated