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Anisotropic pseudogap in the half-filling two-dimensional Hubbard model at finite temperature

机译:有限温度下半填充二维Hubbard模型中的各向异性拟间隙

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摘要

We have studied the pseudogap formation in the single-particle spectra of the half-filling two-dimensional Hubbard model. Using a Green's function with the one-loop self-energy correction of the spin and charge fluctuations, we have numerically calculated the self-energy, the spectral function, and the density of states in the weak-coupling regime at finite temperatures. Pseudogap formations have been observed in both the density of states and the spectral function at the Fermi level. The pseudogap in the spectral function is explained by the non-Fermi-liquid-like nature of the self-energy. The anomalous behavior in the self-energy is caused by both the strong antiferromagnetic spin fluctuation and the nesting condition on the non-interacting Fermi surface. In the present approximation, we find a logarithmic singularity in the integrand of the self-energy imaginary part. The pseudogap in the spectral function is highly momentum dependent on the Fermi surface. This anisotropy of the pseudogap is produced by the flatness of the band dispersion around the saddle point rather than the nesting condition on the Fermi level. [References: 33]
机译:我们已经研究了半填充二维Hubbard模型的单粒子光谱中的伪间隙形成。使用格林函数和自旋和电荷波动的单回路自能校正,我们可以在有限温度下通过数值计算自能,谱函数和弱耦合状态中的态密度。在费米能级的状态密度和光谱函数中都观察到伪假单胞菌的形成。光谱函数中的伪间隙由自能的非费米液体状性质解释。自能量的异常行为是由强反铁磁自旋涨落和非相互作用费米表面上的嵌套条件共同引起的。在目前的近似中,我们在自能量虚部的整数中发现了对数奇点。谱函数中的伪间隙是高度动量,取决于费米表面。伪间隙的各向异性是由围绕鞍点的能带色散的平坦度而不是费米能级上的嵌套条件产生的。 [参考:33]

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