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Ground state and spectral properties across a Charge Density Wave transition in a triangular-lattice spinless Fermion model

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arxiv 1409.5063 v1 pith:2J5N4CIG submitted 2014-09-17 cond-mat.str-el

Ground state and spectral properties across a Charge Density Wave transition in a triangular-lattice spinless Fermion model

classification cond-mat.str-el
keywords phasetransitiontriangular-latticewaveacrosschargedensityexcitation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

We study ground state properties and particle excitation spectra across a commensurate charge density wave transition in a system of strongly interacting fermions, using series expansion methods and mean-field theory. We consider a 1/3-filled system of spinless fermions on a triangular-lattice, with hopping parameter $t$, nearest-neighbor repulsion $V$, and a sublattice dependent chemical potential $\mu_s$. The phase transition is found to be first order for $\mu_s=0$, but becomes continuous with increasing $\mu_s$. The particle and hole excitation spectra exhibit dramatic changes in the vicinity of the phase transitions and in the charge-density wave ordered phase. We discuss the relevance of this study to the Pinball Fermi liquid phase postulated theoretically in earlier studies as well as to various strongly correlated triangular-lattice materials.

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