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arxiv: cond-mat/0505148 · v1 · submitted 2005-05-06 · ❄️ cond-mat.str-el · cond-mat.mtrl-sci

Dynamics and transport properties of heavy fermions: theory

classification ❄️ cond-mat.str-el cond-mat.mtrl-sci
keywords transportdynamicsfoundheavylow-energyregimescalesscaling
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The paramagnetic phase of heavy fermion systems is investigated, using a non-perturbative local moment approach to the asymmetric periodic Anderson model within the framework of dynamical mean field theory. The natural focus is on the strong coupling Kondo-lattice regime wherein single-particle spectra, scattering rates, dc transport and optics are found to exhibit w/w_L,T/w_L scaling in terms of a single underlying low-energy coherence scale w_L. Dynamics/transport on all relevant (w,T)-scales are encompassed, from the low-energy behaviour characteristic of the lattice coherent Fermi liquid, through incoherent effective single-impurity physics likewise found to arise in the universal scaling regime, to non-universal high-energy scales; and which description in turn enables viable quantitative comparison to experiment.

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