Theory of Transition Temperature of Magnetic Double Perovskites
arXiv:cond-mat/0006208 · doi:10.1103/PhysRevB.64.024424
Abstract
We formulate a theory of double perovskite coumpounds such as SrFeReO and SrFeMoO which have attracted recent attention for their possible uses as spin valves and sources of spin polarized electrons. We solve the theory in the dynamical mean field approximation to find the magnetic transition temperature . We find that is determined by a subtle interplay between carrier density and the Fe-Mo/Re site energy difference, and that the non-Fe same-sublattice hopping acts to reduce . Our results suggest that presently existing materials do not optimize .
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