Anisotropic optical conductivity of the putative Kondo insulator CeRuSn
arXiv:1209.2942 · doi:10.1103/PhysRevB.87.115129
Abstract
Kondo insulators and in particular their non-cubic representatives have remained poorly understood. Here we report on the development of an anisotropic energy pseudogap in the tetragonal compound CeRuSn employing optical reflectivity measurements in broad frequency and temperature ranges, and local density approximation plus dynamical mean field theory calculations. The calculations provide evidence for a Kondo insulator-like response within the plane and a more metallic response along the c axis and qualitatively reproduce the experimental observations, helping to identify their origin.
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Cited by in corpus (20)
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- Kondo Insulator to Semimetal Transformation Tuned by Spin-Orbit Coupling
- Weyl-Kondo semimetals in nonsymmorphic systems
- CeRuSn: a strongly correlated material with nontrivial topology
- Heavy Weyl fermion state in CeRuSn
- Route to Topological Superconductivity via Magnetic Field Rotation
- Fully spin-polarized nodal chain state in half metal LiVO
- Parity-violating hybridization in heavy Weyl semimetals
- Magnetic-field-induced nontrivial electronic state in the Kondo-lattice semimetal CeSb
- Determining the local low-energy excitations in the Kondo semimetal CeRuSn using resonant inelastic x-ray scattering
- Pristine quantum criticality in a Kondo semimetal
- Electronic structure of CeRu4Sn6: a density functional plus dynamical mean field theory study
- Anomalous change of the magnetic moment direction by hole doping in CeRuAl
- Giant isotropic Nernst effect in an anisotropic Kondo semimetal
- Itinerant to relocalized transition of f electrons in the Kondo insulator CeRu4Sn6
- Collapse of the ESR fine structure throughout the coherent temperature of the Gd-doped Kondo Semiconductor
- Exceptional Heavy-Fermion Semimetals in Three Dimensions
- f-electron charge densities probed using core level non-resonant inelastic x-ray scattering
- Anisotropic Physical Properties of the Kondo Semimetal CeCuAs
- Thermal conductivity of the Kondo semiconductor CeRuSn