The random free-energy barrier model for ac conduction in disordered solids
- 1 September 1988
- journal article
- conference paper
- Published by AIP Publishing in Journal of Applied Physics
- Vol. 64 (5) , 2456-2468
- https://doi.org/10.1063/1.341681
Abstract
A brief review of the history of ac ionic and electronic conduction in disordered solids is given, followed by a detailed discussion of the simplest possible realistic model: the random free-energy barrier model. This model assumes conduction takes place by hopping, where the hopping charge carriers are subject to spatially randomly varying energy barriers. The model is solved in the continuous time random walk and in the effective medium approximation, and it is shown that the two solutions are almost indistinguishable. In the random free-energy barrier model, the frequency-dependent conductivity is completely determined by the dc conductivity and the dielectric loss strength. The model correctly predicts all qualitative features of ac conduction in disordered solids, and a comparison to experiment on a large number of solids shows that the model is also quantitatively satisfactory.This publication has 56 references indexed in Scilit:
- Linear relaxation: Distributions, thermal activation, structure, and ambiguityJournal of Applied Physics, 1987
- A.c. conduction in amorphous chalcogenide and pnictide semiconductorsAdvances in Physics, 1987
- A SIMPLE MODEL OF ac HOPPING CONDUCTIVITYLe Journal de Physique Colloques, 1985
- A new model for ac conduction in disordered solidsPhysica Status Solidi (a), 1985
- A.C. Loss in amorphous germaniumJournal of Non-Crystalline Solids, 1980
- Frequency dependence of dielectric loss in condensed matterPhysical Review B, 1979
- DC and AC electrical conduction in single crystal aluminaPhysica Status Solidi (a), 1976
- Polaronic Hopping Conduction in Vanadium Phosphate GlassesJournal of Applied Physics, 1971
- Impurity Conduction at Low ConcentrationsPhysical Review B, 1960
- The distribution of relaxation times in dielectricsTransactions of the Faraday Society, 1946