Bipolaron-SO(5) Non-Fermi Liquid in a Two-channel Anderson Model with Phonon-assisted Hybridizations
arXiv:1201.3177 · doi:10.1103/PhysRevB.85.214411
Abstract
We analyze non-Fermi liquid (NFL) properties along a line of critical points in a two-channel Anderson model with phonon-assisted hybridizations. We succeed in identifying hidden nonmagnetic SO(5) degrees of freedom for valence-fluctuation regime and analyze the model on the basis of boundary conformal field theory. We find that the NFL spectra along the critical line, which is the same as those in the two-channel Kondo model, can be alternatively derived by a fusion in the nonmagnetic SO(5) sector. The leading irrelevant operators near the NFL fixed points vary as a function of Coulomb repulsion U; operators in the spin sector dominate for large U, while those in the SO(5) sector do for small U, and we confirm this variation in our numerical renormalization group calculations. As a result, the thermodynamic singularity for small U differs from that of the conventional two-channel Kondo problem. Especially, the impurity contribution to specific heat is proportional to temperature and bipolaron fluctuations, which are coupled electron-phonon fluctuations, diverge logarithmically at low temperatures for small U.
16 pages, 4 figures, 3 tables
References in corpus (5)
- Kondo Effect in an Electron System with Dynamical Jahn-Teller Impurity
- Critical Theory of the Two-Channel Anderson Impurity Model
- Phonon-assisted tunneling and two-channel Kondo physics in molecular junctions
- Kondo Effect of a Magnetic Ion Vibrating in a Harmonic Potential
- Effect of Anharmonicity on the Kondo Phenomena of a Magnetic Ion Vibrating in a Confinement Potential
Cited by in corpus (6)
- Superconductivity of Composite Particles in Two-Channel Kondo Lattice
- Mean-field description of odd-frequency superconductivity with staggered ordering vector
- Electric Dipolar Susceptibility of the Anderson-Holstein Model
- Kondo Effect of a Jahn-Teller Ion Vibrating in a Cubic Anharmonic Potential
- Chaos in Jahn-Teller Rattling
- Continuous-time Quantum Monte Carlo Approach for Impurity Anderson Models with Phonon-assisted Hybridizations