Quantum Critical Exponents for a Disordered Three-Dimensional Weyl Node

Abstract

Three-dimensional Dirac and Weyl semimetals exhibit a disorder-induced quantum phase transition between a semimetallic phase at weak disorder and a diffusive-metallic phase at strong disorder. Despite considerable effort, both numerically and analytically, the critical exponents and z of this phase transition are not known precisely. Here we report a numerical calculation of the critical exponent =1.470.03 using a minimal single-Weyl node model and a finite-size scaling analysis of conductance. Our high-precision numerical value for is incompatible with previous numerical studies on tight-binding models and with one- and two-loop calculations in an ε-expansion scheme. We further obtain z=1.490.02 from the scaling of the conductivity with chemical potential.

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