We show that a generic single-orbital Anderson impurity model, lacking, for instance, any kind of particle-hole symmetry, can be exactly mapped without any constraint onto a resonant level model coupled to two Ising variables, which reduce to one if the hybridization is particle-hole symmetric. The mean-field solution of this model is found to be stable to unphysical spontaneous magnetization of the impurity, unlike the saddle-point solution in the standard slave-boson representation. Remarkably, the mean-field estimate of the Wilson ratio approaches the exact value R-W = 2 in the Kondo regime.
Unbinding slave spins in the Anderson impurity model / Guerci, Daniele; Fabrizio, Michele. - In: PHYSICAL REVIEW. B. - ISSN 2469-9950. - 96:20(2017), pp. 1-5. [10.1103/PhysRevB.96.201106]
Unbinding slave spins in the Anderson impurity model
Guerci, Daniele;Fabrizio, Michele
2017-01-01
Abstract
We show that a generic single-orbital Anderson impurity model, lacking, for instance, any kind of particle-hole symmetry, can be exactly mapped without any constraint onto a resonant level model coupled to two Ising variables, which reduce to one if the hybridization is particle-hole symmetric. The mean-field solution of this model is found to be stable to unphysical spontaneous magnetization of the impurity, unlike the saddle-point solution in the standard slave-boson representation. Remarkably, the mean-field estimate of the Wilson ratio approaches the exact value R-W = 2 in the Kondo regime.File | Dimensione | Formato | |
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