Nonlinear Transport Near a Quantum Phase Transition in Two Dimensions
Superconductivity
2009-11-10 v1
Abstract
The problem of non-linear transport near a quantum phase transition is solved within the Landau theory for the dissipative insulator-superconductor phase transition in two dimensions. Using the non-equilibrium Schwinger round-trip Green function formalism, we obtain the scaling function for the non-linear conductivity in the quantum disordered regime. We find that the conductivity scales as at low field but crosses over at large fields to a universal constant on the order of . The crossover between these two regimes obtains when the length scale for the quantum fluctuations becomes comparable to that of the electric field within logarithmic accuracy.
Cite
@article{arxiv.cond-mat/0310129,
title = {Nonlinear Transport Near a Quantum Phase Transition in Two Dimensions},
author = {Denis and Dalidovich and Philip Phillips},
journal= {arXiv preprint arXiv:cond-mat/0310129},
year = {2009}
}
Comments
4.15 pages, no figures