Ligand field theory for the orbit–lattice coupling coefficients to E strains of d5 ions in tetrahedral symmetry
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.453256
Reference29 articles.
1. Effect of Linear Jahn-Teller Coupling on Paramagnetic Resonance in aE2State
2. Effect of Linear Jahn-Teller Coupling on Paramagnetic Resonance in aE2State
3. Calculation of first-order and second-order Jahn-Teller coupling constants in MgO:V2+ and KMgF3:V2+
4. Calculation of first-order and second-order Jahn-Teller coupling constants in MgO:V2+ and KMgF3:V2+
5. Calculation of first-order and second-order Jahn-Teller coupling constants in MgO:V2+ and KMgF3:V2+
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2. Electronic and vibronic cluster models for theT24(G)level ofd5ions in tetrahedral symmetry;Physical Review B;2006-08-08
3. Cluster model for radiative transition probabilities of d5 ions in tetrahedralsymmetry: Case of Mn2+ in the common cation series ZnS, ZnSe, and ZnTe;Physical Review B;2004-08
4. Molecular electronic model, vibronic interactions, and selective intensity transfer for levels 4T2(G) of Mn2+ in ZnS and ZnSe;Physica B: Condensed Matter;2003-12
5. Molecular electronic model and vibronic coupling to ɛ-vibrational modes of the fluorescent level4T1ofd5ions in II-VI and III-V compounds;Physical Review B;2002-11-12
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