Measurements of the J=0 metastable 6d^{2} ^{3}P_{0} state in Th^{2+} support its use for a hyperfine-free nuclear clock with ^{229}Th.
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Theoretical calculations show nuclear excitation by inelastic electron scattering can deplete isomers in 93mMo, 152mEu, and 178mHf by exciting them to higher states that decay below the isomer.
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$J=0$ metastable state of $\mathrm{Th}^{2+}$ for a hyperfine-free nuclear clock
Measurements of the J=0 metastable 6d^{2} ^{3}P_{0} state in Th^{2+} support its use for a hyperfine-free nuclear clock with ^{229}Th.
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Isomer depletion via nuclear excitation by inelastic electron scattering
Theoretical calculations show nuclear excitation by inelastic electron scattering can deplete isomers in 93mMo, 152mEu, and 178mHf by exciting them to higher states that decay below the isomer.