paper

Phase diagram of the triangular extended Hubbard model

arXiv:1402.3160 · doi:10.1103/PhysRevLett.113.246405

Abstract

We study the extended Hubbard model on the triangular lattice as a function of filling and interaction strength. The complex interplay of kinetic frustration and strong interactions on the triangular lattice leads to exotic phases where long-range charge order, antiferromagnetic order, and metallic conductivity can coexist. Variational Monte Carlo simulations show that three kinds of ordered metallic states are stable as a function of nearest neighbor interaction and filling. The coexistence of conductivity and order is explained by a separation into two functional classes of particles: part of them contributes to the stable order, while the other part forms a partially filled band on the remaining substructure. The relation to charge ordering in charge transfer salts is discussed.

5 pages, 5 figures. For more information and the latest version see: http://www.physik.uni-kl.de/eggert/papers/index.html

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