Improved Theory for the Temperature-Dependent Hyperfine Coupling Constant of Rare-EarthS-State Ions
Author:
Publisher
American Physical Society (APS)
Subject
General Physics and Astronomy
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRev.180.350/fulltext
Reference17 articles.
1. Paramagnetic Relaxation Times for Titanium and Chrome Alum
2. Spin-lattice relaxation in rare-earth salts
3. The orbit-lattice interaction as a possible mechanism for the ground state splitting of S state ions
4. Contribution of the Orbit-Lattice Interaction to the Splitting of theS728Ground State
5. Temperature Dependence of Hyperfine Coupling ofS-State Ions in Cubic Environment
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1. Phonon contribution to the hyperfine coupling constant;International Journal of Quantum Chemistry;2009-06-18
2. The Temperature Dependence of the Spin-Hamiltonian Parameters for Mn2+ Impurity Ions in Calcite and Coal;Journal of Magnetic Resonance, Series A;1994-03
3. Temperature dependence of the anomalous muonium hyperfine interaction and depolarization rate in silicon;Physical Review B;1981-05-15
4. The temperature dependence of the EPR spectrum of6S-state ions;Journal of Physics C: Solid State Physics;1980-03-10
5. A model of ligand hyperfine interaction in MF2:Gd3+and MF2-Eu2+;Journal of Physics C: Solid State Physics;1979-10-14
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