Ginzburg-Landau functional for nearly antiferromagnetic perfect and disordered Kondo lattices
arXiv:cond-mat/0106591 · doi:10.1103/PhysRevB.65.184410
Abstract
Interplay between Kondo effect and trends to antiferromagnetic and spin glass ordering in perfect and disordered bipartite Kondo lattices is considered. Ginzburg-Landau equation is derived from the microscopic effective action written in three mode representation (Kondo screening, antiferromagnetic correlations and spin liquid correlations). The problem of local constraint is resolved by means of Popov-Fedotov representation for localized spin operators. It is shown that the Kondo screening enhances the trend to a spin liquid crossover and suppresses antiferromagnetic ordering in perfect Kondo lattices and spin glass ordering in doped Kondo lattices. The modified Doniach's diagram is constructed, and possibilities of going beyond the mean field approximation are discussed.
18 pages, RevTeX, 7 EPS figures included
Cited by in corpus (9)
- Fermi-liquid instabilities at magnetic quantum phase transitions
- Kondo-Anderson Transitions
- Spin Glass and antiferromagnetism in Kondo lattice disordered systems
- Transport properties of moderately disordered UCuPd
- Semi-fermionic representation for spin systems under equilibrium and non-equilibrium conditions
- Damped orbital excitations in the titanates
- Antiferromagnetic Ising spin glass competing with BCS pairing interaction in a transverse field
- A quantum Monte Carlo method on asymptotic Lefschetz thimbles for quantum spin systems: An application to the Kitaev model in a magnetic field
- Kondo Lattice without Nozieres Exhaustion Effect