Investigations of the g factors and hyperfine structure parameters for Er3+ ion in zircon-type compounds

Author(s):  
Wu Shao-Yi ◽  
Zheng Wen-Chen
2003 ◽  
Vol 64 (7) ◽  
pp. 1213-1216 ◽  
Author(s):  
Dong Hui-Ning ◽  
Zheng Wen-Chen ◽  
Wu Shao-Yi ◽  
Tang Sheng

2003 ◽  
Vol 58 (7-8) ◽  
pp. 434-438 ◽  
Author(s):  
Hui-Ning Dong ◽  
Wen-Chen Zheng ◽  
Shao-Yi Wu ◽  
Sheng Tang

The EPR g factors g|| and g⊥ of Yb3+ and the hyperfine structure constants A|| and A⊥ of 171Yb3+ and 173Yb3+ in crystals of the zircon-structure orthophosphates YPO4, LuPO4, and ScPO4 are calculated from the calculation formulas of the EPR parameters for a 4f13 ion in tetragonal symmetry. In these formulas, the contributions to the EPR parameters from the J-mixing between the ground 2F7/2 and excited 2F5/2 states, the admixtures between the lowest Kramers doublet Γγ and the other 6 Kramers doublets (or irreducible representations) via the crystal-field and orbital angular momentum (or hyperfine structure) interactions and the covalency reduction effect are included. The calculated values agree with the observed ones. In the calculations, the superposition model is used to estimate the crystal-field parameters. It is found intrinsic parameters Ā(R0) that the superposition model with the same R0 for Yb3+ in various zircon-type compounds obtained by considering local lattice relaxation are not scattered as those obtained by using the structural data of pure zircon-type compounds. It appears that, in order to obtain suitable superposition model parameters, the local lattice relaxation should be taken in to account.


2004 ◽  
Vol 59 (12) ◽  
pp. 943-946 ◽  
Author(s):  
Hui-Ning Dong ◽  
Shao-Yi Wu

In this paper, the spin Hamiltonian parameters g factors g∥ and g⊥ of Yb3+ and hyperfine structure constants A∥ and A⊥ of 171Yb3+ and 173Yb3+ in CaWO4 crystal are calculated from the two-order perturbation formulae. In these formulae, the contributions of the covalence effects, the admixture between J =7/2 and J =5/2 states as well as the second-order perturbation are included. The needed crystal parameters are obtained from the superposition model and the local structure of the studied system. The calculated results are in reasonable agreement with the observed values. The results are discussed.


2020 ◽  
Vol 101 (6) ◽  
Author(s):  
Sacha Schiffmann ◽  
Michel Godefroid ◽  
Jörgen Ekman ◽  
Per Jönsson ◽  
Charlotte Froese Fischer

2003 ◽  
Vol 58 (9-10) ◽  
pp. 503-506
Author(s):  
Shao-Yi Wu ◽  
Xiu-Ying Gao ◽  
Wei-Zi Yan

The EPR g factors and the hyperfine structure constant A factors for Cr3+ in MgS and SrS are theoretically studied by using the two-spin-orbit (S.O.)-coupling-coefficient formulas for a 3d3 ion in octahedra based on the cluster approach. In these formulas, both the contributions due to the S.O. coupling coefficient of the central 3d3 ion and that of ligands are taken into account. Based on these studies, the g and A factors of Cr3+ in both MgS and SrS are satisfactorily explained. The results are discussed.


2004 ◽  
Vol 59 (1-2) ◽  
pp. 47-50
Author(s):  
Xiao-Xuan Wu ◽  
Wen-Chen Zheng ◽  
Sheng Tang

The defect structure of the tetragonal Cu2+ center in PbTiO3: Cu2+ crystal is studied by analyzing the EPR g factors and hyperfine structure constants. From the study, we suggest that an oxygen vacancy occurs in the nearest-neighbors site of Cu2+ due to charge compensation, and that the offcenter displacement of Cu2+ is smaller than that of the replaced host ion Ti4+. The reasonableness of the defect structure is discussed.


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