Vacancy-Mn2+Pair Spectra in Alkali Chlorides
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.3.696/fulltext
Reference12 articles.
1. Electron Spin Resonance ofMn++in Alkali Chlorides: Association with Vacancies and Impurities
2. Zero-Field Splitting ofS-State Ions. I. Point-Multipole Model
3. Zero-Field Splitting ofS-State Ions. III. Corrections to Parts I and II and Application to Distorted Cubic Crystals
4. Spin-Lattice Coupling Constants of anFe3+Ion in MgO
5. Zero-Field Splitting ofS-State Ions. II. Overlap and Covalency Model
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1. Spin-spin interaction inf7(S8)-state ions in solids: Evaluation of the zero-field splitting ofGd3+ion in lanthanum ethyl sulfate;Physical Review B;1984-08-01
2. Optical and Magnetic Resonance Studies of Transition Metal Ions and Complexes in Alkali Halides;physica status solidi (b);1981-05-01
3. Analysis of the spin–Hamiltonian parameters for Mn2+in orthorhombic and axial symmetry sites of the alkali chlorides. Binding energies of the Mn2+cation vacancy complexes;The Journal of Chemical Physics;1980-08
4. Solution hardening by aliovalent cations in ionic crystals;Materials Science and Engineering;1977-04
5. Uniaxial stress and temperature dependence of the zero field splitting of divalent manganese in rubidium azide;Physical Review B;1974-07-01
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