arXiv · cond-mat/9903226
Optical conductivity in doped manganites with planar x$^2$-y$^2$ orbital order
Abstract
We investigate a planar model for the ferromagnetic (FM) phase of manganites, which develops orbital order of $e_g$ electrons with x$^2$-y$^2$-symmetry at low temperature. The dynamic structure factor of orbital excitations and the optical conductivity $σ(ω)$ are studied with help of a finite-temperature diagonalization method. Our calculations provide a theoretical prediction for $σ(ω)$ for the 2D FM state and are of possible relevance for the recently found A-type phase of manganites at high doping which consists of FM layers coupled antiferromagnetically. In the x$^2$-y$^2$ ordered regime $σ(ω)$ shows both a Drude peak and a gapped incoherent absorption due to a gap in the orbital excitations.
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Frank Mack, Peter Horsch. 1999-03-15. Optical conductivity in doped manganites with planar x$^2$-y$^2$ orbital order. https://doi.org/10.1103/physrevlett.82.3160
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