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Renormalized parameters and perturbation theory in dynamical mean-field theory for the Hubbard model

机译:Hubbard模型动力平均场理论中的重新规范化参数和摄动理论

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摘要

We calculate the renormalized parameters for the quasiparticles and their interactions for the Hubbard model in the paramagnetic phase as deduced from the low-energy Fermi-liquid fixed point using the results of a numerical renormalization-group calculation (NRG) and dynamical mean-field theory (DMFT). Even in the low-density limit there is significant renormalization of the local quasiparticle interaction (U) over tilde, in agreement with estimates based on the two-particle scattering theory of J. Kanamori [Prog. Theor. Phys. 30, 275 (1963)]. On the approach to the Mott transition we find a finite ratio for (U) over tilde/(N) over tilde, where 2 (D) over tilde is the renormalized bandwidth, which is independent of whether the transition is approached by increasing the on-site interaction U or on increasing the density to half filling. The leading omega(2) term in the self-energy and the local dynamical spin and charge susceptibilities are calculated within the renormalized perturbation theory (RPT) and compared with the results calculated directly from the NRG-DMFT. We also suggest, more generally from the DMFT, how an approximate expression for the q,omega spin susceptibility chi(q,omega) can be derived from repeated quasiparticle scattering with a local renormalized scattering vertex.
机译:我们使用数值重归一化组计算(NRG)和动力学平均场理论的结果,计算了从低能费米液体固定点推导出的准粒子的准归一化参数及其在顺磁相中的Hubbard模型的相互作用(DMFT)。甚至在低密度范围内,代字号上的局部拟粒子相互作用(U)也会显着重新规范化,这与基于J. Kanamori [Prog。理论。物理30,275(1963)]。在进行Mott过渡的方法上,我们发现(U)对波浪线/(N)对波浪线的有限比率,其中波浪线上的2(D)是重新归一化的带宽,这与是否通过增加on来实现过渡无关现场相互作用U或将密度增加到一半填充。自能量,局部动态自旋和电荷磁化率中的前导omega(2)项在重新归一化扰动理论(RPT)中进行计算,并与直接从NRG-DMFT计算得到的结果进行比较。我们还从DMFT更普遍地建议,如何从具有局部重新归一化散射顶点的重复准粒子散射中得出q,ω自旋磁化率chi(q,omega)的近似表达式。

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