Parisi-Symmetry of the Many-Body Quantum Theory of randomly interacting fermionic systems
arXiv:cond-mat/9803239 · doi:10.1103/PhysRevB.60.10325
Abstract
We show that fermion systems with random interactions lead to strong coupling of glassy order and fermionic correlations, which culminates in the implementation of Parisi replica permutation symmetry breaking (RPSB) in their T=0 quantum field theories. Precursor effects below fermionic AT-lines become stronger as the temperature decreases and play a crucial role within the entire low T regime. The Parisi ultrametric structure is shown to determine low energy excitations and the dynamic behaviour of fermionic correlations for large times, which is predicted to affect transport properties in metallic (and superconducting) spin glasses. Thus we reveal quantum dynamical fingerprints of the Parisi scheme. These effects, being strongest as T->0, are contrasted with quantum spin glass transitions at T=0 displaying only small RPSB corrections at low T. RPSB-effects moreover appear to influence the loci of the ground state transitions at O(T^0) and hence the phase diagrams. We derive a new representation of the T=0 Green's function which leads to a map of the fermionic (insulating) spin glass solution to the local limit solution of a Hubbard model with a random repulsive interaction. We obtain the distribution of the Hubbard interaction fluctuation and its dependence on the order of RPSB. A generalized mapping between metallic spin glass and random U Hubbard model is conjectured. The new representation of the Green's function at T=0 is suggested to be useful for generalizations to superconductors with spin glass phases.
RevTex, 32 pages, 12 figures, submitted to Phys. Rev. B
References in corpus (5)
- Critical Behavior of Random Bond Potts Models
- Magnetic Gaps related to Spin Glass Order in Fermionic Systems
- Parisi Phase in a Neuron
- Effect of spin-glass order on magnetic polarons in semimagnetic semiconductors
- Low-energy excitations in fermionic spin glasses: A quantum-dynamical image of Parisi symmetry breaking
Cited by in corpus (9)
- Ultracold atomic gases in optical lattices: mimicking condensed matter physics and beyond
- Disordered ultracold atomic gases in optical lattices: A case study of Fermi-Bose mixtures
- Quantum TAP equations
- From second to first order transitions in a disordered quantum magnet
- Role of the transverse field in inverse freezing in the fermionic Ising spin-glass model
- Replica symmetry breaking solution for the fermionic Ising spin glass and the Ghatak-Sherrington model
- On exact mappings between fermionic Ising spin glass and classical spin glass models
- Selforganized 3-band structure of the doped fermionic Ising spin glass
- Stability conditions for fermionic Ising spin-glass models in the presence of a transverse field