Ce-site dilution in the ferromagnetic Kondo lattice CeRhGe
arXiv:2107.13131 · doi:10.1088/0256-307X/38/8/087101
Abstract
The heavy fermion ferromagnet CeRhGe is the first example of a clean stoichiometric system where the ferromagnetic transition can be continuously suppressed by hydrostatic pressure to a quantum critical point. In order to reveal the outcome when the magnetic lattice of CeRhGe is diluted with non-magnetic atoms, this study reports comprehensive measurements of the physical properties of both single crystal and polycrystalline samples of LaCeRhGe. With increasing , the Curie temperature decreases, and no transition is observed for 0.25, while the system evolves from exhibiting coherent Kondo lattice behaviors at low , to the Kondo impurity scenario at large . Moreover, non-Fermi liquid behavior (NFL) is observed over a wide doping range, which agrees well with the disordered Kondo model for 0.52 0.66, while strange metal behavior is revealed in the vicinity of = 0.26.
6 pages, 5 figures
References in corpus (5)
- Quantum Criticality in Heavy Fermion Metals
- Heavy Fermions and Quantum Phase Transitions
- Anisotropic c-f hybridization in the ferromagnetic quantum critical metal CeRhGe
- Localized 4f-electrons in the quantum critical heavy fermion ferromagnet CeRhGe
- Kondo-hole substitution in heavy fermions: dynamics and transport
Cited by in corpus (4)
- Suppression of ferromagnetism and influence of disorder in silicon-substituted CeRh6Ge4
- From localized 4f electrons to anisotropic exchange interactions in ferromagnetic CeRh6Ge4
- Transport in Single Quantum Dots: A Review from Linear Response to Nonlinear Regimes
- Non-collinear ferromagnetism in the Kondo lattice CeCoGe