We propose a laser resonance chromatography (LRC) experiment on ²²⁹Th³⁺, with the goal of detecting the ion's electronic ground $5f$ ²F5/2 state and metastable $7s$ ²S1/2 state by means of their ion mobilities. To this end, we first model the ion-neutral interaction potentials for the two electronic states with a relativistic Fock space coupled cluster method and complete basis-set extrapolation scheme. The interaction potentials are used to simulate the state-specific reduced ion mobilities in terms of the operating temperature and the external electric field. The ion mobilities differ by more than 7% at 300 K and moderate field strengths; thus, separation of the ²²⁹Th³⁺ metastable state lies within the reach of LRC experiments targeting optical probing and monitoring of the nuclear clock transition in this isotope.
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Visentin et al. (2024) studied this question.
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