Resistivity, Hall effect and Shubnikov-de Haas oscillations in CeNiSn
arXiv:cond-mat/0207379 · doi:10.1103/PhysRevB.66.075127
Abstract
The resistivity and Hall effect in CeNiSn are measured at temperatures down to 35 mK and in magnetic fields up to 20 T with the current applied along the {\it b} axis. The resistivity at zero field exhibits quadratic temperature dependence below 0.16 K with a huge coefficient of the term (54 cm/K). The resistivity as a function of field shows an anomalous maximum and dip, the positions of which vary with field directions. Shubnikov-de Haas (SdH) oscillations with a frequency {\it F} of 100 T are observed for a wide range of field directions in the {\it ac} and {\it bc} planes, and the quasiparticle mass is determined to be 10-20 {\it m}. The carrier density is estimated to be electron/Ce. In a narrow range of field directions in the {\it ac} plane, where the magnetoresistance-dip anomaly manifests itself clearer than in other field directions, a higher-frequency () SdH oscillation is found at high fields above the anomaly. This observation is discussed in terms of possible field-induced changes in the electronic structure.
15 pages, 5 figures, to appear in Phys. Rev. B (15 Sept. 2002 issue)
Cited by in corpus (11)
- Topological Kondo Insulators
- A theory of Topological Kondo Insulators
- Unified explanation of the Kadowaki-Woods ratio in strongly correlated materials
- Universality in heavy-fermion systems with general degeneracy
- Möbius Kondo Insulators
- Magnetic field tuned quantum criticality of heavy fermion system YbPtBi
- Correlation in transport coefficients of hole-doped CuRhO single crystals
- Giant isotropic Nernst effect in an anisotropic Kondo semimetal
- Many-body breakdown of indirect gap in topological Kondo insulators
- CeFeAl: a Correlated Metal with a Fermi Surface Exhibiting Nonmetallic Conduction
- Evolution of magnetic bubble domains in the uniaxial ferromagnet CeRuGaB inferred from the Hall effect and ac magnetic susceptibility