The infrared conductivity of V2O3 is measured in the whole phase diagram. Quasiparticles appear above the Neel temperature T-N and eventually disappear further enhancing the temperature, leading to a pseudogap in the optical spectrum above 425 K. Our calculations demonstrate that this loss of coherence can be explained only if the temperature dependence of lattice parameters is considered. V2O3 is therefore effectively driven from the 'metallic' to the 'insulating' side of the Mott transition as the temperature is increased.

Quasiparticle evolution and pseudogap formation in V2O3: An infrared spectroscopy study

Capone M;Malavasi L;Postorino P;Lupi S
2008

Abstract

The infrared conductivity of V2O3 is measured in the whole phase diagram. Quasiparticles appear above the Neel temperature T-N and eventually disappear further enhancing the temperature, leading to a pseudogap in the optical spectrum above 425 K. Our calculations demonstrate that this loss of coherence can be explained only if the temperature dependence of lattice parameters is considered. V2O3 is therefore effectively driven from the 'metallic' to the 'insulating' side of the Mott transition as the temperature is increased.
2008
Istituto di Chimica della Materia Condensata e di Tecnologie per l'Energia - ICMATE
Istituto dei Sistemi Complessi - ISC
INFM
V2O3
MOTT TRANSITION
OPTICAL CONDUCTIVITY
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/154291
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