Lou X, Yu T L, Song Y H, Wen C H P, Wei W Z, Leithe-Jasper A, Ding Z F, Shu L, Kirchner S, Xu H C, Peng R, Feng D L
Laboratory of Advanced Materials, State Key Laboratory of Surface Physics, and Department of Physics, Fudan University, Shanghai 200438, China.
Max-Planck-Institut für Chemische Physik fester Stoffe, Nöthnitzer Straβe 40, 01187 Dresden, Germany.
Phys Rev Lett. 2021 Apr 2;126(13):136402. doi: 10.1103/PhysRevLett.126.136402.
CeOs_{4}Sb_{12} (COS) and PrOs_{4}Sb_{12} (POS) are two representative compounds that provide the ideal vantage point to systematically study the physics of multi-f-electron systems. COS with Ce 4f^{1}, and POS with Pr 4f^{2} configurations show distinct properties of Kondo insulating and heavy fermion superconductivity, respectively. We unveiled the underlying microscopic origin by angle-resolved photoemission spectroscopy studies. Their eV-scale band structure matches well, representing the common characters of conduction electrons in ROs_{4}Sb_{12} systems (R=rare earth). However, f electrons interact differently with conduction electrons in COS and POS. Strong hybridization between conduction electrons and f electrons is observed in COS with band dependent hybridization gaps, and the development of a Kondo insulating state is directly revealed. Although the ground state of POS is a singlet, finite but incoherent hybridization exists, which can be explained by the Kondo scattering with the thermally excited triplet crystalline electric field state. Our results help us to understand the intriguing properties in COS and POS, and provide a clean demonstration of the microscopic differences in heavy fermion systems with 4f^{1} and 4f^{2} configurations.
CeOs₄Sb₁₂(COS)和PrOs₄Sb₁₂(POS)是两种具有代表性的化合物,它们为系统研究多f电子体系的物理性质提供了理想的切入点。具有Ce 4f¹构型的COS和具有Pr 4f²构型的POS分别展现出近藤绝缘和重费米子超导的独特性质。我们通过角分辨光电子能谱研究揭示了其潜在的微观起源。它们在电子伏特尺度的能带结构匹配良好,代表了ROs₄Sb₁₂体系(R = 稀土)中传导电子的共同特征。然而,COS和POS中的f电子与传导电子的相互作用方式不同。在COS中观察到传导电子与f电子之间存在强烈的杂化,且杂化能隙与能带相关,直接揭示了近藤绝缘态的形成。尽管POS的基态是单重态,但存在有限且非相干的杂化,这可以用与热激发三重态晶体电场态的近藤散射来解释。我们的结果有助于我们理解COS和POS中有趣的性质,并清晰地展示了具有4f¹和4f²构型的重费米子体系中的微观差异。