Heavy-fermion metals with hybridization nodes: Unconventional Fermi liquids and competing phases
arXiv:0710.3644 · doi:10.1103/PhysRevB.77.125118
Abstract
Microscopic models for heavy-fermion materials often assume a local, i.e., momentum-independent, hybridization between the conduction band and the local-moment f electrons. Motivated by recent experiments, we consider situations where this neglect of momentum dependence is inappropriate, namely when the hybridization function has nodes in momentum space. We explore the thermodynamic and optical properties of the highly anisotropic heavy Fermi liquid, resulting from Kondo screening in a higher angular-momentum channel. The dichotomy in momentum space has interesting consequences: While e.g. the low-temperature specific heat is dominated by heavy quasiparticles, the electrical conductivity at intermediate temperatures is carried by unhybridized light electrons. We then discuss aspects of the competition between Kondo effect and ordering phenomena induced by inter-moment exchange: We propose that the strong momentum-space anisotropy plays a vital role in selecting competing phases. Explicit results are obtained for the interplay of unconventional hybridization with unconventional, magnetically mediated, superconductivity, utilizing variants of large-N mean-field theory. We make connections to recent experiments on CeCoIn5 and other heavy-fermion materials.
16 pages, 8 figs, (v2) remark on Wiedemann-Franz added, small changes, final version as published
References in corpus (6)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Weak magnetism and non-Fermi liquids near heavy-fermion critical points
- Fractionalized Fermi liquids
- Modelling the Localized to Itinerant Electronic Transition in the Heavy Fermion System CeIrIn5
- The Missing Link: Magnetism and Superconductivity
- Superconductivity due to co-operative Kondo effect in Pu 115's
Cited by in corpus (12)
- Electrodynamics of Correlated Electron Materials
- Crystal-field and Kondo scale investigation of CeMIn5 (M=Co, Ir and Rh): a combined x-ray absorption and inelastic neutron study
- Valence bond solid states with symplectic symmetry
- On the separability of dynamical and non-local correlations in three dimensions
- d-wave superconductivity in the frustrated two-dimensional periodic Anderson model
- Alternative Kondo breakdown mechanism: Orbital-selective orthogonal metal transition
- Modelling Magnetic Fluctuations in the Stripe Ordered State
- Impact of the Rashba Spin Orbit Coupling on -electron Materials
- Evidence of momentum dependent hybridization in Ce2Co0.8Si3.2
- Floquet engineering multi-channel Kondo physics
- Influence of the symmetry of the hybridization on the critical temperature of multi-band superconductors
- Proximity-induced hidden order transition in a correlated heterostructure SrVOFeAs