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Variational cluster approach to superconductivity and magnetism in the Kondo lattice model

机译:kondo格子模型中超导和磁力的变分簇方法

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We investigate in detail antiferromagnetic (AF) and superconducting (SC) phases as well as their coexistence in the two-dimensional Kondo lattice model on a square lattice, which is a paradigmatic model for heavy-fermion materials. The results presented are mainly obtained using the variational cluster approximation (VCA) and are complemented by analytical findings for the equations of motion of pairing susceptibilities. A particularly interesting aspect is the possibility to have s-wave SC near half-filling as reported by Bodensiek et al. [Phys. Rev. Lett. 110, 146406 (2013)] When doping the system, we identify three regions which correspond to an AF metallic phase with small Fermi surface at weak coupling, an AF metal with a different Fermi surface topology at intermediate coupling, and a paramagnetic metal with a large Fermi surface at strong coupling. The transition between these two AF phases is found to be discontinuous at lower fillings, but turns to a continuous one when approaching half-filling. In the quest for s-wave superconductivity, only solutions are found which possess mean-field character. No true superconducting solutions caused by correlation effects are found in the s-wave channel. In contrast, we clearly identify robust d-wave pairing away from half-filling. However, we show that only by treating antiferromagnetism and superconductivity on equal footing, artificial superconducting solutions at half-filling can be avoided. Our VCA findings support scenarios previously identified by variational Monte Carlo approaches and are a starting point for future investigations with VCA and further approaches such as cluster-embedding methods.
机译:我们在详细的反铁磁(AF)和超导(SC)相位以及它们在方形格子上的二维Kondo格子模型中的共存,这是重型铁饼材料的矛盾模型。呈现的结果主要是使用变分簇近似(VCA)获得的,并且通过用于配对敏感性的运动方程的分析结果互补。特别有趣的方面是博德森克等人报道的近半填充的S波SC的可能性。 [物理。 rev. lett。 110,146406(2013)]在掺杂系统时,我们识别三个区域,该区域对应于具有小型费米表面的AF金属相,在弱耦合下,AF金属在中间耦合下具有不同的费米表面拓扑,以及具有A的顺磁金属。大耦合的大型费米表面。在接近半填充时,发现这两个AF相之间的过渡在较低填充物处是不连续的,但是在接近半填充时转向连续的。在寻求S波超导性的情况下,仅发现具有平均场角色的解决方案。在S波通道中没有发现由相关效果引起的真正超导解决方案。相比之下,我们清楚地识别远离半填充的强大D波配对。然而,我们表明,只有通过在等于脚踏上处理反铁磁体和超导,可以避免半填充的人造超导溶液。我们的VCA调查结果支持先前由变分Monte Carlo方法标识的方案,并且是未来与VCA调查的起点以及诸如集群嵌入方法的进一步方法。

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