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Anderson Orthogonality Catastrophe in Disordered Systems

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arxiv cond-mat/0106556 v1 pith:VSJILJFU submitted 2001-06-27 cond-mat.mes-hall cond-mat.dis-nn

Anderson Orthogonality Catastrophe in Disordered Systems

classification cond-mat.mes-hall cond-mat.dis-nn
keywords disorderandersoncatastrophefoundorthogonalityaddingaveragedbefore
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We study the Anderson orthogonality catastrophe (AOC) in finite conductors with diffusive disorder. The disorder averaged logarithm of $\chi$, the overlap between the ground states before and after adding a static impurity, is found to depend nonmonotonically on the disorder. In two dimensions $<\ln\chi^{-1}> \propto \ln^2 N$ in the weak disorder limit, thus showing a stronger dependence on the number of electrons $N$ than in the canonical AOC. A very broad tail of the distribution of $\chi$, found numerically, is a signature of the importance of a few-level statistics at the Fermi energy.

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