Critical regime of two dimensional Ando model: relation between critical conductance and fractal dimension of electronic eigenstates

Abstract

The critical two-terminal conductance gc and the spatial fluctuations of critical eigenstates are investigated for a disordered two dimensional model of non-interacting electrons subject to spin-orbit scattering (Ando model). For square samples, we verify numerically the relation σc=1/[2π(2-D(1))] e2/h between critical conductivity σc=gc=(1.42 0.005) e2/h and the fractal information dimension of the electron wave function, D(1)=1.889 0.001. Through a detailed numerical scaling analysis of the two-terminal conductance we also estimate the critical exponent =2.80 0.04 that governs the quantum phase transition.

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