Transport properties in Simplified Double Exchange model
arXiv:cond-mat/0309169 · doi:10.1142/S0217984903004853
Abstract
Transport properties of the manganites by the double-exchange mechanism are considered. The system is modeled by a simplified double-exchange model, i.e. the Hund coupling of the itinerant electron spins and local spins is simplified to the Ising-type one. The transport properties such as the electronic resistivity, the thermal conductivity, and the thermal power are calculated by using Dynamical mean-field theory. The transport quantities obtained qualitatively reproduce the ones observed in the manganites. The results suggest that the Simplified double exchange model underlies the key properties of the manganites.
5 pages, 5 eps figures
References in corpus (1)
Cited by in corpus (6)
- Electronic Structure Calculations with Dynamical Mean-Field Theory: A Spectral Density Functional Approach
- Doping change and distortion effect on double-exchange ferromagnetism
- Impact of magnetic dopants on magnetic and topological phases in magnetic topological insulators
- Metallic ferromagnetism-insulating charge order transition in doped manganites
- Spin dynamics in paramagnetic diluted magnetic semiconductors
- Phase diagram of microcavity exciton-polariton condensates