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Thermal transport of a delta-doped multilayer with strongly correlated electrons (CROSBI ID 47570)

Prilog u knjizi | izvorni znanstveni rad

Zlatić, Veljko ; Freericks, Jim, K. Thermal transport of a delta-doped multilayer with strongly correlated electrons // New materials for thermoelectric applications : theory and experiment / Zlatić, Veljko ; Hewson, Alex (ur.). Dordrecht: Springer, 2013. str. 93-114

Podaci o odgovornosti

Zlatić, Veljko ; Freericks, Jim, K.

engleski

Thermal transport of a delta-doped multilayer with strongly correlated electrons

We show how a lightly doped Mott insulator has hugely enhanced electronic thermal transport at low temperature. It displays universal behavior independent of the interaction strength when the carriers can be treated as nondegenerate fermions and a nonuniversal ``crossover'' region where the Lorenz number grows to large values, while still maintaining a large thermoelectric figure-of-merit. The electron dynamics are described by the Falicov-Kimball model which is solved for arbitrary large on-site correlation with a dynamical mean-field theory algorithm on a Bethe lattice. We show how these results are generic for lightly doped Mott insulators as long as the renormalized Fermi liquid scale is pushed to very low temperature and the system is not magnetically ordered.

figure of merit, Falicov-Kimball model

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Podaci o prilogu

93-114.

objavljeno

Podaci o knjizi

New materials for thermoelectric applications : theory and experiment

Zlatić, Veljko ; Hewson, Alex

Dordrecht: Springer

2013.

978-94-007-4986-3

Povezanost rada

Fizika

Poveznice