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Frequency-Temperature Crossover in the Conductivity of Disordered Luttinger Liquids

Bernd Rosenow, Andreas Glatz, Thomas Nattermann

cond-mat.mes-hallarXiv:cond-mat/0610426

Abstract

The temperature (T) and frequency (ω) dependent conductivity of weakly disordered Luttinger liquids is calculated in a systematic way both by perturbation theory and from a finite temperature renormalization group (RG) treatment to leading order in the disorder strength. Whereas perturbation theory results in ω/T scaling of the conductivity such scaling is violated in the RG traetment. We also determine the non-linear field dependence of the conductivity, whose power law scaling is different from that of temperature and frequency dependence.

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