Transport Criticality in Triangular Lattice Hubbard Model
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概要
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We study electric transport near the Mott metal--insulator transition. Optical conductivity of the half-filled Hubbard model on a triangular lattice is calculated based on a cellular dynamical mean field theory including vertex corrections inside the cluster. Near the Mott critical end point, we find that a Drude peak on the metallic side smoothly connects to an ``ingap'' peak on the insulating side. We find that the weight of these peaks exhibits a critical power-law behavior near the Mott critical end point upon controlling Coulomb repulsion U, |D-D^{*}|\propto|U-U^{*}|^{1/\delta}, with an unconventional value of the exponent 1/\delta. Although the criticality of thermodynamics is described by the Ising universality class, the obtained value of the exponent 1/\delta challenges the general belief that conductivity has the same scaling behavior as order parameter or energy density.
- 2012-08-15
著者
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Tsunetsugu Hirokazu
Institute For Solid Physics The University Of Tokyo
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Hattori Kazumasa
Institute For Solid State Physics University Of Tokyo
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Sato Toshihiro
Institute for Solid State Physics, University of Tokyo, Kashiwa, Chiba 277-8581, Japan
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