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首页> 外文期刊>Physical review letters >Evolution of the Fermi Surface across a Magnetic Order-Disorder Transition in the Two-Dimensional Kondo Lattice Model: A Dynamical Cluster Approach
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Evolution of the Fermi Surface across a Magnetic Order-Disorder Transition in the Two-Dimensional Kondo Lattice Model: A Dynamical Cluster Approach

机译:二维近藤格子模型中费米表面跨磁有序无序跃迁的演化:一种动态聚类方法

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摘要

We use the dynamical cluster approximation, with a quantum Monte Carlo cluster solver on clusters of up to 16 orbitals, to investigate the evolution of the Fermi surface across the magnetic order-disorder transition in the two-dimensional doped Kondo lattice model. In the paramagnetic phase, we observe the generic hybridized heavy-fermion band structure with large Luttinger volume. In the antiferromagnetic phase, the heavy-fermion band drops below the Fermi surface giving way to hole pockets centered around k = (π/2, π/2) and equivalent points. In this phase Kondo screening does not break down, but the topology of the resulting Fermi surface is that of a spin-density wave approximation in which the localized spins are frozen.
机译:我们使用动态簇近似,在多达16个轨道的簇上使用量子蒙特卡洛簇求解器,研究二维掺杂的近藤晶格模型中费米表面在磁有序无序跃迁上的演化。在顺磁相中,我们观察到具有大Luttinger体积的通用杂化重费米带结构。在反铁磁相中,重费米带下降到费米表面以下,让位于以k =(π/ 2,π/ 2)和等效点为中心的空穴。在这一阶段,近藤筛选没有破裂,但是所得费米表面的拓扑结构是自旋密度波近似的拓扑,其中局部自旋被冻结。

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