paper

Simultaneous Determination of Multiple Nuclear Parameters of Th Using Highly Charged Ions

arXiv:2606.15180

Abstract

Development of a Th nuclear optical clock requires precise and model-insensitive nuclear-structure parameters, which presently suffer from limited accuracy and poor consistency. We propose a joint spectroscopy scheme using two highly charged Th ions with electronic ground states, where the lowest electronic excitation energy of each ion far exceeds the nuclear transition energy. This configuration effectively forms a three-level system comprising the electronic ground state and the nuclear ground () and isomeric () states, resulting in strongly enhanced nuclear hyperfine mixing. Within this framework, a unified analysis of precision measurements on both ions enables the simultaneous determination of five key nuclear parameters without relying on external nuclear inputs: the magnetic dipole moments and , the bare-nucleus transition energy , the charge-radius difference , and the transition matrix element . With this approach, the uncertainties in and are estimated to be reduced by factors of 3 and 2, respectively, relative to their current uncertainties. %compared with current values. This work could provide a useful benchmark for nuclear theory and serve as a foundation for future development of a Th-based nuclear optical clock.