Relativistic coupled-cluster calculations of Th³⁺ properties combined with experiment yield accurate differential nuclear charge radii and hyperfine moments for ²²⁹Th ground and isomeric states.
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Energy oscillations between electron and nuclear transitions in 229Th ions enable a coherent electron bridge for isomer excitation and a nuclear quantum battery.
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Comprehensive Assessment of $\mathrm{Th}^{3+}$ Properties for Nuclear Clock and Fundamental Physics Applications
Relativistic coupled-cluster calculations of Th³⁺ properties combined with experiment yield accurate differential nuclear charge radii and hyperfine moments for ²²⁹Th ground and isomeric states.
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Long Time Energy Oscillation Between Electron Shell and Nucleus in $^{229}$Th Ions and Coherent Electron Bridge for Nuclear Quantum Battery
Energy oscillations between electron and nuclear transitions in 229Th ions enable a coherent electron bridge for isomer excitation and a nuclear quantum battery.