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Quasiparticle anisotropy and pseudogap formation: a functional renormalization group study

机译:准粒子各向异性和伪间隙形成:功能正常化小组研究

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Using the one-loop functional renormalization group technique we evaluate the self-energy in the weak-coupling regime of the 2D t-t' Hubbard model. At van Hove (vH) band fillings and at low temperatures the quasiparticle weight along the Fermi surface (FS) continuously vanishes on approaching the (pi, 0) point where the quasiparticle concept is invalid. Away from vH band fillings the quasiparticle peak is formed inside an anisotropic pseudogap and the self-energy has the conventional Fermi-liquid characteristics near the Fermi level. The spectral weight of the quasiparticle features is reduced on parts of the FS between the near vicinity of hot spots and the FS points closest to (pi, 0) and (0, pi). (c) 2005 Elsevier B.V. All rights reserved.
机译:使用单环功能重整化组技术,我们评估了二维t-t'Hubbard模型的弱耦合状态下的自能。在范霍夫(vH)带填充物和低温下,沿着费米表面(FS)的准粒子重量在接近(pi,0)点处逐渐消失,其中准粒子概念无效。远离vH谱带填充,在各向异性伪间隙内形成了准粒子峰,并且自能在费米能级附近具有传统的费米液体特性。在热点附近和最接近(pi,0)和(0,pi)的FS点之间的FS部分上,准粒子特征的光谱权重降低了。 (c)2005 Elsevier B.V.保留所有权利。

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