Net-charge-compensation effects on the crystal field and the spin Hamiltonian for theFe3+ions at theK+-vacancy sites inFe3+:KZnF3andFe3+:KMgF3crystals
Author:
Publisher
American Physical Society (APS)
Link
http://harvest.aps.org/v2/journals/articles/10.1103/PhysRevB.52.4237/fulltext
Reference29 articles.
1. Electron-Nuclear-Double-Resonance and Electron-Spin-Resonance Evidence for aFe3+(K+Vacancy) Center in Iron-Doped KZnF3
2. Net charge compensation contribution in the fine structure of EPR defect centres. Application to M3+ − VM (cation vacancy) and M3+ − X+ (M = Cr, Fe, Gd; X = Li, Na) centres in A2MF4 and A2MCl4
3. Analysis of the net charge-compensation contribution in the fine structure of EPR defect centers:Cr3+,Fe3+, andGd3+inA2MX4-,AMX3-, andMX2-type crystals
4. The superposition model of crystal fields
5. Superposition Model Analysis of the Spin-Hamiltonian Parameters for Fe3+ Ions in Trigonal Symmetry Sites of KMgF3 and KZnF3 Single Crystals
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