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Matching DMFT calculations with photoemission spectra of heavy fermion insulators: universal properties of the near-gap spectra of SmB6

机译:将DMFT计算与重型费米子绝缘子的光发射光谱匹配:SmB6的近能隙光谱的通用性质

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摘要

Paramagnetic heavy fermion insulators consist of fully occupied quasiparticle bands inherent to Fermi liquid theory. The gap emergence below a characteristic temperature is the ultimate sign of coherence for a many-body system, which in addition can induce a non-trivial band topology. Here, we demonstrate a simple and efficient method to compare a model study and an experimental result for heavy fermion insulators. The temperature dependence of the gap formation in both local moment and mixed valence regimes is captured within the dynamical mean field (DMFT) approximation to the periodic Anderson model (PAM). Using the topological coherence temperature as the scaling factor and choosing the input parameter set within the mixed valence regime, we can unambiguously link the theoretical energy scales to the experimental ones. As a particularly important result, we find improved consistency between the scaled DMFT density of states and the photoemission near-gap spectra of samarium hexaboride (SmB6).
机译:顺磁重型费米子绝缘子由费米液体理论固有的完全占据的准粒子带组成。在特征温度以下出现的缝隙是多体系统相干性的最终标志,此外,它还可以诱发非平凡的能带拓扑。在这里,我们演示了一种简单有效的方法,可以将重型费米绝缘子的模型研究与实验结果进行比较。在局部平均矩和混合价态中,间隙形成的温度依赖性都在对周期安德森模型(PAM)的动态平均场(DMFT)近似内捕获。使用拓扑相干温度作为比例因子并在混合价态内选择输入参数集,我们可以明确地将理论能级与实验能级联系起来。作为一个特别重要的结果,我们发现比例化的DMFT密度与六硼化((SmB6)的光发射近能谱之间的一致性得到改善。

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