Andreev reflection and order parameter symmetry in heavy-fermion superconductors: the case of CeCoIn
arXiv:0902.1009 · doi:10.1088/0953-8984/21/10/103203
Abstract
We review the current status of Andreev reflection spectroscopy on the heavy fermions, mostly focusing on the case of CeCoIn, a heavy-fermion superconductor with a critical temperature of 2.3 K. This is a well-established technique to investigate superconducting order parameters via measurements of the differential conductance from nanoscale metallic junctions. Andreev reflection is clearly observed in CeCoIn as in other heavy-fermion superconductors. The measured Andreev signal is highly reduced to the order of maximum 13% compared to the theoretically predicted value (100%). Analysis of the conductance spectra using the extended BTK model provides a qualitative measure for the superconducting order parameter symmetry, which is determined to be -wave in CeCoIn. A phenomenological model is proposed employing a Fano interference effect between two conductance channels in order to explain both the conductance asymmetry and the reduced Andreev signal. This model appears plausible not only because it provides good fits to the data but also because it is highly likely that the electrical conduction occurs via two channels, one into the heavy electron liquid and the other into the conduction electron continuum. Further experimental and theoretical investigations will shed new light on the mechanism of how the coherent heavy-electron liquid emerges out of the Kondo lattice, a prototypical strongly correlated electron system. Unresolved issues and future directions are also discussed.
Topical Review published in JPCM (see below), 28 pages, 9 figures
References in corpus (20)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Quantum Criticality in Heavy Fermion Metals
- Scanning tunneling spectroscopy of high-temperature superconductors
- Two Gaps Make a High Temperature Superconductor?
- Exchange interaction between single magnetic adatoms
- Nodal Structure of Unconventional Superconductors Probed by the Angle Resolved Thermal Transport Measurements
- Andreev Reflection in Heavy-Fermion Superconductors and Order Parameter Symmetry in CeCoIn_5
- Unpaired Electrons in the Heavy-Fermion Superconductor CeCoIn_{5}
- Universal Behavior in Heavy Electron Materials
- Heavy electrons and the symplectic symmetry of spin
- Supplementary material to Heavy electrons and the symplectic symmetry of spin
- Spectroscopic Evidence for Multiple Order Parameter Components in the Heavy Fermion Superconductor CeCoIn_5
- Kondo effect in single atom contacts: the importance of the atomic geometry
- The Fano effect in the point contact spectroscopy of heavy electron materials
- Asymmetric tunneling, Andreev reflection and dynamic conductance spectra in strongly correlated metals
- Gapless Fermi Surfaces in Superconducting CeCoIn5?
- Comment on "Spectroscopic Evidence for Multiple Order Parameters in the Heavy Fermion Superconductor CeCoIn5"
- Electron transmission in normal/heavy-fermion superconductor junctions
- Point-contact Andreev reflection spectroscopy of heavy-fermion-metal/superconductor junctions
- Competing order and the asymmetric tunneling spectrum in high temperature cuprate superconductors