4.6 Article

Weakly coupled one-dimensional Mott insulators

Journal

PHYSICAL REVIEW B
Volume 65, Issue 11, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.65.115117

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We consider a model of one-dimensional Mott insulators coupled by a weak interchain tunneling t(perpendicular to). We first determine the single-particle Green's function of a single chain by exact field-theoretical methods and then take the tunneling into account by means of a random-phase approximation. In order to embed this approximation into a well-defined expansion with a small parameter, the Fourier transform T-perpendicular to(k) of the interchain coupling is assumed to have a small support in momentum space such that every integration over transverse wave vector yields a small factor kappa(0)(2)<<1. When T-perpendicular to(0) exceeds a critical value, a small Fermi surface develops in the form of electron and hole pockets. We demonstrate that Luttinger's theorem holds both in the insulating and in the metallic phases. We find that the quasiparticle residue Z increases very fast through the transition and quickly reaches a value of about 0.4-0.6. The metallic state close to the transition retains many features of the one-dimensional system in the form of strong incoherent continua.

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