Renormalization Group Approach to Spectral Properties of the Two-Channel Anderson Impurity Model

Abstract

The impurity Green function and dynamical susceptibilties for the two-channel Anderson impurity model are calculated. An exact expression for the self-energy of the impurity Green function is derived. The imaginary part of the self-energy scales as |/TK| for T 0 serving as a hallmark for non-Fermi behavior. The many-body resonance is pinned to a universal value 1/(2π) at =0. Its shape becomes increasingly more symmetric for the Kondo-regimes of the model. The dynamical susceptibilities are governed by two energy scales TK and Th and approach a constant value for 0, whereas relation ''() holds for the single channel model.

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