EPR and electron-nuclear-double-resonance investigations ofFe3+in KMgF3
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.10.1044/fulltext
Reference15 articles.
1. Electron paramagnetic resonance in single crystals of BaTiO3
2. Electron Paramagnetic Resonance ofFe3+in the Strong Axial Field of PbTiO3Host
3. Strong Axial Electron Paramagnetic Resonance Spectrum ofFe3+in SrTiO3Due to Nearest-Neighbor Charge Compensation
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1. Investigation of the Fe3+ centers in perovskite KMgF3 through a combination of ab initio (density functional theory) and semi-empirical (superposition model) calculations;Journal of Applied Physics;2015-08-14
2. Zero-field splitting of the ground state and local lattice distortions for Fe3+ ions at the tetragonal FeF5O cluster center in Fe3+:KMgF3 crystals;Journal of Fluorine Chemistry;2012-03
3. Theoretical investigations of the local structure distortion and the spin Hamiltonian parameters of Cr3+ ions at tetragonal charge-compensation defect CrF5O site in Cr3+: KMgF3 crystals;Physica B: Condensed Matter;2011-10
4. Impurities bound to vacancies in insulators: Electronic relaxation and physical properties of theCr3+−VMmodel center in KMF3(M=Mg, Zn);Physical Review B;2011-03-31
5. On the Application of the Bond Transferability Postulate to Transition-Metal Complexes: Study of FeF6 3− and FeOF5 4− Centers in KMgF3;Applied Magnetic Resonance;2008-07
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