The 2-Channel Kondo Model I: Review of Experimental Evidence for its Realization in Metal Nanoconstrictions
arXiv:cond-mat/9702048 · doi:10.1006/aphy.1997.5750
Abstract
Certain zero-bias anomalies (ZBAs) in the voltage, temperature and magnetic field dependence of the conductance of quenched Cu point contacts have previously been interpreted to be due to non-magnetic 2-channel Kondo (2CK) scattering from near-degenerate atomic two-level tunneling systems (Ralph and Buhrman, 1992; Ralph et al. 1994), and hence to represent an experimental realization of the non-Fermi-liquid physics of the T=0 fixed point of the 2-channel Kondo model. In this, the first in a series of three papers (I,II,III) devoted to 2-channel Kondo physics, we present a comprehensive review of the quenched Cu ZBA experiments and their 2CK interpretation, including new results on ZBAs in constrictions made from Ti or from metallic glasses. We first review the evidence that the ZBAs are due to electron scattering from stuctural defects that are not static, but possess internal dynamics. In order to distinguish between several mechanisms proposed to explain the experiments, we then analyze the scaling properties of the conductance at low temperature and voltage and extract from the data a universal scaling function . The theoretical calculation of the corresponding scaling function within the 2CK model is the subject of papers II and III. The main conclusion of our work is that the properties of the ZBAs, and most notably their scaling behavior, are in good agreement with the 2CK model and clearly different from several other proposed mechanisms.
35 pages RevTeX, 19 encapsulated postscript figures; this final published version features two additional authors, an additional section reviewing recent experiments on Ti nanoconstrictions that agree very well with the 2-channel Kondo model, 6 new figures (and is much shorter the previous 53 page version, due to reformatting)
Cited by in corpus (21)
- Non-equilibrium dynamics of the Anderson impurity model
- Dephasing in Metals by Two-Level Systems in the 2-Channel-Kondo Regime
- Andreev Scattering and the Kondo Effect
- Logarithmic Conformal Field Theory: a Lattice Approach
- Orbital two-channel Kondo effect in epitaxial ferromagnetic L10-MnAl films
- Non-linear response of a Kondo system: Perturbation approach to the time dependent Anderson impurity model
- Experimental tests for the relevance of two-level systems for electron dephasing
- Existence of two-channel Kondo regime for tunneling impurities with resonant scattering
- The 2-Channel Kondo Model II: CFT Calculation of Non-Equilibrium Conductance through a Nanoconstriction containing 2-Channel Kondo Impurities
- Observation of orbital two-channel Kondo effect in a ferromagnetic L10-MnGa film
- Strong vs. Weak Coupling Duality and Coupling Dependence of the Kondo Temperature in the Two-Channel Kondo Model
- Non-existence of strong coupling two-channel Kondo fixed point for microscopic models of tunneling centers
- Slow two-level systems in point contacts
- Orbital Kondo behavior from dynamical structural defects
- Noncrossing Approximation for the Anisotropic Kondo Model: Charge Fluctuations in a Quantum Box
- Dynamical correlations in the spin-half two-channel Kondo model
- Kondo Effect in Systems with Spin Disorder
- Kondo effect in mesoscopic systems
- Optimization of reactively sputtered Mn3GaN films based on resistivity measurements
- Rotational Quantum Impurities in a Metal: Stability of the 2-Channel Kondo Fixed Point in a Magnetic Field
- Probing interactions in mesoscopic gold wires