论文标题
巨型光谱重新归一化和复杂的杂交物理物理学,Cecusb2
Giant spectral renormalization and complex hybridization physics in a Kondo lattice system, CeCuSb2
论文作者
论文摘要
我们研究了近托晶格系统的电子结构,CeCUSB2表现出明显的质量增强和近多型行为。由于最终状态效应,我们观察到CE核心水平的硬X射线光发射光谱中的多个特征。深度分辨数据表现出特征的相对强度的显着变化,并具有探针的表面灵敏度。提取的表面和大量光谱函数不同,除了井筛和筛选不佳的特征外,还具有较高结合能的近相样特征。 SB的核心水平光谱表现出巨大而复杂的变化,这是该技术表面灵敏度的函数。对实验数据的分析表明,两个非等效的SB位点具有不同的电子结构,在每个类别中,靠近表面的SB层与散装层不同。温度的升高会显着影响CE-SB杂交。在所有核心水平光谱中也观察到等离子激发引起的损耗特征。所有这些结果揭示了CE-SB杂交的重要性,并表明CE-SB杂交的复杂重新归一化可能是该系统具有外来电子特性的原因。
We investigate the electronic structure of a Kondo lattice system, CeCuSb2 exhibiting significant mass enhancement and Kondo-type behavior. We observe multiple features in the hard x-ray photoemission spectra of Ce core levels due to strong final-state effects. The depth-resolved data exhibit a significant change in relative intensity of the features with the surface sensitivity of the probe. The extracted surface and bulk spectral functions are different and exhibit a Kondo-like feature at higher binding energies in addition to the well and poorly screened features. The core-level spectra of Sb exhibit huge and complex changes as a function of the surface sensitivity of the technique. The analysis of the experimental data suggests that the two non-equivalent Sb sites possess different electronic structures and in each category, the Sb layers close to the surface are different from the bulk ones. An increase in temperature influences the Ce-Sb hybridization significantly. The plasmon-excitation-induced loss features are also observed in all core level spectra. All these results reveal the importance of Ce-Sb hybridizations and indicate that the complex renormalization of Ce-Sb hybridization may be the reason for the exotic electronic properties of this system.