English

Defect assignment of the clock site in $^{229}\text{Th:CaF}_2$

Atomic Physics 2026-07-13 v1

Abstract

The performance of solid-state 229Th^{229}\text{Th} nuclear clocks depends sensitively on the microscopic environment of the thorium nucleus in the host crystal. Here we reassess the dominant quadrupole-split thorium site in 229Th:CaF2^{229}\text{Th:CaF}_2, which has been assigned to a thorium dimer in recent spectroscopic work. Thermodynamic estimates, density functional theory calculations, and electric-field-gradient comparisons instead favor an isolated Th4+\text{Th}^{4+} substitution on a Ca2+\text{Ca}^{2+} site charge-compensated by two nearby fluorine interstitials in a relaxed 9090^\circ motif. The same calculation identifies a higher-energy mixed-shell interstitial motif as a plausible minor site. The clock-active quadrupole-split site is therefore controlled by local fluoride compensation rather than unavoidable thorium aggregation. This defect assignment also has implications for achievable linewidths and provides a microscopic basis for reducing broadening in solid-state nuclear clocks.

Keywords

Cite

@article{arxiv.2607.12202,
  title  = {Defect assignment of the clock site in $^{229}\text{Th:CaF}_2$},
  author = {Daniel A. Rehn and Harry W. T. Morgan and Harris E. Mason and H. B. Tran Tan and Ricky Elwell and Igor M. Savukov and Michael J. Martin and Andrei Derevianko and Eric R. Hudson},
  journal= {arXiv preprint arXiv:2607.12202},
  year   = {2026}
}