Universal behavior in the Nernst effect of heavy fermion materials
arXiv:2003.08183 · doi:10.1103/PhysRevResearch.2.033105
Abstract
We report the observation of a universal scaling of the Nernst coefficient over a wide intermediate temperature range in heavy fermion materials, including the superconductors CeCuSi, CeCoIn, and CePdIn, the ferromagnetic Kondo lattice CeRhSi, the nonmagnetic CeRuSi, the intermediate valent YbAl, and the hidden order compound URuSi, that cover a broad spectrum of heavy fermion materials with different crystal, valence and ground state properties. The scaling formula follows exactly the magnetic susceptibility of emergent heavy quasiparticles as predicted in the two-fluid model. We give a tentative explanation of the scaling based on the skew scattering mechanism and the Boltzmann picture and argue that the Nernst effect is produced by the asymmetry of the quasiparticle density of states rather than that of the scattering rate. In URuSi, the giant Nernst signal in the hidden order phase is also found to follow the predicted scaling, indicating the potential involvement of hybridization physics. Our work suggests a candidate unified scenario for the Nernst effect in heavy fermion materials.
6 pages, 4 figures
References in corpus (17)
- Visualizing heavy fermions emerging in a quantum critical Kondo lattice
- The Nernst effect and the boundaries of the Fermi liquid picture
- Fermi surface instability at the hidden-order transition of URu2Si2
- Nernst effect in semi-metals: the meritorious heaviness of electrons
- Universal Behavior in Heavy Electron Materials
- Transport properties in CeOsSb: Possibility of the ground state being semiconducting
- Towards the identification of a quantum critical line in the (p, B) phase diagram of CeCoIn5
- Colossal thermomagnetic response in the exotic superconductor URu2Si2
- Long range order and two-fluid behavior in heavy electron materials
- Thermoelectric response near a quantum critical point: the case of CeCoIn5
- Hybridization dynamics in CeCoIn5 revealed by ultrafast optical spectroscopy
- The Fano effect in the point contact spectroscopy of heavy electron materials
- Nernst effect of the new iron-based superconductor LaOFFeAs
- Anomalous thermopower and Nernst effect in : entropy-current loss in precursor state
- Quantum critical behavior in heavy electron materials
- Quantum criticality in Ce2PdIn8: thermoelectric study
- Anomalous Hall effect in heavy electron materials