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Remnant Fermi surface in a pseudogap regime of the two-dimensional Hubbard model at finite temperature

机译:二维Hubbard模型在伪温度下拟间隙状态下的剩余费米表面

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A precursor effect on the Fermi surface in the two-dimensional Hubbard model at finite temperatures near the antiferromagnetic instability is studied using three different itinerant approaches: the second order perturbation theory, the paramagnon theory (PT), and the two-particle self-consistent (TPSC) approach. In general, at finite temperature, the Fermi surface of the interacting electron systems is not sharply defined due to the broadening effects of the self-energy. In order to take account of those effects we consider the single-particle spectral function A(k,0) at the Fermi level, to describe the counterpart of the Fermi surface at T = 0. We find that the Fermi surface is destroyed close to the pseudogap regime due to the spin-fluctuation effects in both PT and TPSC approaches. Moreover, the top of the effective valence band is located around k = (π/2,π/2) in agreement with earlier investigations on the single-hole motion in the antiferromagnetic background. A crossover behavior from the Fermi-liquid regime to the pseudogap regime is observed in the electron concentration dependence of the spectral function and the self-energy.
机译:使用三种不同的迭代方法研究了二维Hubbard模型中有限温度附近反铁磁不稳定性对费米表面的前驱效应:二阶扰动理论,顺磁子理论(PT)和两粒子自洽(TPSC)方法。通常,在有限的温度下,由于自能量的扩展效应,相互作用电子系统的费米表面没有被清晰地定义。为了考虑这些影响,我们考虑费米能级的单粒子光谱函数A(k,0),以描述T = 0时费米表面的对应物。我们发现费米表面被破坏到接近由于PT和TPSC两种方法中的自旋涨落效应,都存在伪间隙机制。此外,有效价带的顶部位于k =(π/ 2,π/ 2)左右,这与先前对反铁磁背景中单孔运动的研究一致。从费米-液态到the隙态的交换行为在光谱函数和自能的电子浓度依赖性中观察到。

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