Dynamic Jahn-Teller Effect forin MgO: Hypersonic Attenuation
- 15 December 1973
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review B
- Vol. 8 (12) , 5999-6009
- https://doi.org/10.1103/physrevb.8.5999
Abstract
The acoustic attenuation due to scattering from substitutional impurities in MgO provides information on both the symmetry and energy of the states of the impurity system. Only acoustic modes which serve as a basis for an irreducible representation are observed to be resonantly scattered by the impurity system. Assuming the states of the impurity and its nearest neighbors can be approximated to first order by a molecular cluster, the acoustic modes with irreducible representation are the ones that excite the molecular-cluster vibrational mode which interacts with the electronic configuration and splits the degenerate ground state. The resonant scattering which leads to a relaxation maximum in the attenuation as a function of temperature, is interpreted as being due to indirect transitions. Energy-level separations, determined from the relaxation absorption, suggest a Jahn-Teller tunneling splitting of approximately 14 (1.75 meV). A detailed comparison of the experimental energy-level separations determined from the hypersonic relaxation exhibits substantial agreement with the calculated energy levels of Fletcher and Stevens and is consistent with the thermal-conductivity measurement of Challis et al. A uniaxial stress leads to a splitting of the relaxation peak and when fitted to the stain-dependent theoretical calculations, yields a Jahn-Teller coupling energy of 8.1 × /m in approximate agreement with the point-ion approximation.
Keywords
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