Collective effects in Th229 -doped crystals
Author:
Funder
Ministry of Science and Technology, Taiwan
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevA.98.062520/fulltext
Reference47 articles.
1. Nuclear clocks based on resonant excitation of γ-transitions
2. Reduced Transition Probabilities for the Gamma Decay of the 7.8 eV Isomer in Th229
3. Nuclear laser spectroscopy of the 3.5 eV transition in Th-229
4. Energy Splitting of the Ground-State Doublet in the NucleusTh229
5. Direct detection of the 229Th nuclear clock transition
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1. Laser Excitation of the Th-229 Nucleus;Physical Review Letters;2024-04-29
2. Feasibility and potential of a thorium-doped barium-lithium-fluoride single crystal as a candidate for solid-state nuclear optical clock material;Physical Review A;2024-03-15
3. Structures and Properties of High-Concentration Doped Th:CaF2 Single Crystals for Solid-State Nuclear Clock Materials;Inorganic Chemistry;2024-02-12
4. Thorium‐Doped Lithium Fluoride Single Crystal: A Potential Promising Candidate for Solid State Nuclear Optical Clock Materials;Advanced Optical Materials;2023-02-09
5. Features of coherent excitation of 229mTh;Nuclear Physics A;2022-06
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