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Fermi-liquid theory and divergences of the two-particle irreducible vertex in the periodic Anderson lattice

机译:周期安德森格子中双粒子Irreaducible顶点的费米液理论和分歧

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摘要

Here we analyze the divergences of the irreducible vertex function in dynamical mean field theory, which may indicate either a nonphysical breakdown of the perturbation theory or a response to some physical phenomenon. To investigate this question, we construct a quasiparticle vertex from the diverging irreducible vertex functions. This vertex describes the scattering between quasiparticles and quasiholes in a Fermi liquid. We show that the quasparticle vertex does not diverge in the charge channel, wherein the irreducible vertex does diverge; and we show that the quasiparticle vertex does diverge in the spin channel, wherein the irreducible vertex does not diverge. This divergence occurs at the Mott transition, wherein the Fermi-liquid theory breaks down. Both the half filled Hubbard and Anderson lattices are investigated. In general, our results support that the divergences of the irreducible vertex function do not indicate a nonphysical failure of the perturbation theory. Instead, the divergences are the mathematical consequence of inverting a matrix (the local charge susceptibility) which accumulates increasingly negative diagonal elements as the Hubbard interaction suppresses charge fluctuations. Indeed, we find that the first divergences of the irreducible vertex in both Hubbard and Anderson lattices occurs near the maximum magnitude of the (negative) vertex-connected part of the charge susceptibility.
机译:在这里,我们分析了动态平均场理论中不可缩忽功能的分解,这可能表明扰动理论的非物理分解或对某些物理现象的反应。为了调查这个问题,我们从发散的不可缩短的顶点函数构造一个Quasiparticle Vertex。该顶点描述了在费米液体中的Quasiply和Quasiheles之间的散射。我们表明普通顶部在充电通道中不发散,其中不可缩略的顶点偏离;我们表明Quasiparticle Vertex在旋转通道中发散,其中不可缩略的顶点不会发散。这种分歧发生在Mott转变处,其中Fermi-液体理论分解。半填充的哈伯德和安德森格子都经过调查。通常,我们的结果支持,不可缩略的顶点功能的分歧不表示扰动理论的非物理失败。相反,分歧是随着船舶相互作用抑制电荷波动,反转矩阵(局部电荷敏感性)的数学后果,该矩阵(局部电荷敏感性)累积越来越多的对角线元件。实际上,我们发现,哈伯德和安德森格子两者的IRREUCIBLE VERTEX的第一次分解发生在电荷易感性的(负)顶点连接部分的最大幅度附近。

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