Noncentrosymmetric Ce$_{3}$Bi$_{4}$Pd$_{3}$ has attracted a lot of attention as a candidate for strongly correlated topological material, yet its experimental ground state remains a matter of contention. Two conflicting scenarios have emerged from a comparison to prototypical Kondo insulator Ce$_{3}$Bi$_{4}$Pt$_{3}$: either Ce$_{3}$Bi$_{4}$Pd$_{3}$ is a spin-orbit-driven topological semimetal or a Kondo insulator with smaller Kondo coupling than its Pt counterpart. Here we determine the ground state of Ce$_{3}$Bi$_{4}$Pd$_{3}$ via electrical resistivity measurements under hydrostatic pressure, which is a clean symmetry-preserving tuning parameter that increases hybridization but virtually preserves spin-orbit coupling. Ce$_{3}$Bi$_{4}$Pd$_{...
Magnetic topological quantum materials display a diverse range of fascinating physical properties wh...
Inelastic neutron scattering from (Ce1−xLax)3Bi4Pt3, with x = 0, 0.1 and 0.25, shows that a gap in t...
The topological insulating phase results from inversion of the band gap due to spin-orbit coupling a...
Ce3Bi4Au3 crystallizes in the same noncentrosymmetric cubic structure as the prototypical Kondo insu...
We report the results of high-pressure X-ray diffraction, X-ray absorption, and electrical transport...
The Kondo Lattice Model (KLM) is one of the most important models for studying heavy fermion (HF) sy...
Recent theoretical studies of topologically nontrivial electronic states in Kondo insulators have po...
We report on magnetic measurements and electronic structure investigations of CeNiSn and CeRhSb. Bo...
We investigated the electronic structure of the enigmatic CeRh$_3$B$_2$ using resonant inelastic sca...
Ce3Bi4Pt3 is a cerium compound that exhibits a hybridization gap and concomitant semiconducting beha...
The magnetoresistance (MR) of the narrow-gap Kondo insulator Ce3Bi4Pt3 and its non-magnetic analog L...
Heavy fermion materials have recently attracted attention for their potential to combine topological...
Owing to the specific topological states in nodal-line semimetals, novel topological superconductivi...
We report on the low-temperature ($T <$ 120 K) thermal expansion of the bismuth-based topological se...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Magnetic topological quantum materials display a diverse range of fascinating physical properties wh...
Inelastic neutron scattering from (Ce1−xLax)3Bi4Pt3, with x = 0, 0.1 and 0.25, shows that a gap in t...
The topological insulating phase results from inversion of the band gap due to spin-orbit coupling a...
Ce3Bi4Au3 crystallizes in the same noncentrosymmetric cubic structure as the prototypical Kondo insu...
We report the results of high-pressure X-ray diffraction, X-ray absorption, and electrical transport...
The Kondo Lattice Model (KLM) is one of the most important models for studying heavy fermion (HF) sy...
Recent theoretical studies of topologically nontrivial electronic states in Kondo insulators have po...
We report on magnetic measurements and electronic structure investigations of CeNiSn and CeRhSb. Bo...
We investigated the electronic structure of the enigmatic CeRh$_3$B$_2$ using resonant inelastic sca...
Ce3Bi4Pt3 is a cerium compound that exhibits a hybridization gap and concomitant semiconducting beha...
The magnetoresistance (MR) of the narrow-gap Kondo insulator Ce3Bi4Pt3 and its non-magnetic analog L...
Heavy fermion materials have recently attracted attention for their potential to combine topological...
Owing to the specific topological states in nodal-line semimetals, novel topological superconductivi...
We report on the low-temperature ($T <$ 120 K) thermal expansion of the bismuth-based topological se...
Superconductivity and topological quantum states are two frontier fields of research in modern conde...
Magnetic topological quantum materials display a diverse range of fascinating physical properties wh...
Inelastic neutron scattering from (Ce1−xLax)3Bi4Pt3, with x = 0, 0.1 and 0.25, shows that a gap in t...
The topological insulating phase results from inversion of the band gap due to spin-orbit coupling a...