Mesoscopic charging effects in the σ-model for granular metals

Abstract

We derive the σ-model for granular metals. It is valid for any relation between the temperature, T, and the grain mean level spacing. The continuum limit of the σ-model describes non-perturbative charging effects in homogeneous disordered metals. The σ-model action contains a novel term which is crucial for studying Coulomb blockade effects. Topological properties of the σ-model encoding charge discreteness are studied. For T below the escape rate from the grain, , Coulomb blockade effects are described by solitons of the Q-matrix which are delocalized in real space. At T> the solitons transform into phase instantons localized at a single tunneling contact.

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