Correlated Electron Paramagnetic Resonance and Optical Study of CdF2:Er3+. II.C3vLocal-Site Symmetry
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Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.7.907/fulltext
Reference17 articles.
1. Correlated Electron Paramagnetic Resonance and Optical Study of CdF2:Er3+. I.C2vLocal-Site Symmetry
2. Improved IRQC Performance of CdF2 :Er3+ by Generation of C3ν Local‐Site Symmetry
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1. Determination of charge-compensated C 3υ (II) centers for Er3+ ions in CdF2 and CaF2 crystals*;Chinese Physics B;2021-03-01
2. Concentration of cubic M3+ centres in CaF2 crystals;Crystal Research and Technology;1985-03
3. Site selective laser spectroscopy of the insulator‐to‐semiconductor transition in CdF2:Er3+;The Journal of Chemical Physics;1984-08
4. Influence of a thermal treatment on the spectroscopic properties of Eu3+and Er3+ions in CdF2crystals;Journal of Physics C: Solid State Physics;1983-06-20
5. Semiconducting CdF2 : Mn—A new material for efficient blue‐green electroluminescence;Applied Physics Letters;1979-02
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