Effect of the Lattice and Spin-Phonon Contributions on the Temperature Behavior of the Ground State Splitting of Gd3+ in SrMoO4
- Authors: Gorlov A.D.1
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Affiliations:
- Institute of Natural Sciences and Mathematics of Ural Federal University
- Issue: Vol 60, No 2 (2018)
- Pages: 334-338
- Section: Mechanical Properties, Physics of Strength, and Plasticity
- URL: https://journal-vniispk.ru/1063-7834/article/view/202093
- DOI: https://doi.org/10.1134/S1063783418020117
- ID: 202093
Cite item
Abstract
The temperature behavior of the EPR spectra of the Gd3+ impurity center in single crystals of SrMoO4 in the temperature range T = 99–375 K is studied. The analysis of the temperature dependences of the spin Hamiltonian b20(T) = b2(F) + b2(L) and P20(T) = P2(F) + P2(L) (for Gd157) describing the EPR spectrum and contributing to the Gd3+ ground state splitting ΔE is carried out. In terms of the Newman model, the values of b2(L) and P2(L) depending on the thermal expansion of the static lattice are estimated; the b2(F) and P2(F) spin-phonon contributions determined by the lattice ion oscillations are separated. The analysis of b20(T) and P20(T) is evidence of the positive contribution of the spin-phonon interaction; the model of the local oscillations of the impurity cluster with close frequencies ω describes well the temperature behavior of b2(F) and P2(F).
About the authors
A. D. Gorlov
Institute of Natural Sciences and Mathematics of Ural Federal University
Author for correspondence.
Email: Anatoliy.Gorlov@urfu.ru
Russian Federation, Yekaterinburg
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