A supersymmetric hierarchical model for weakly disordered $3d$ semimetals
Mathematical Physics
2020-12-02 v3 math.MP
Abstract
In this paper we study a hierarchical supersymmetric model for a class of gapless, three-dimensional, weakly disordered quantum systems, displaying pointlike Fermi surface and conical intersections of the energy bands in the absence of disorder. We use rigorous renormalization group methods and supersymmetry to compute the correlation functions of the system. We prove algebraic decay of the two-point correlation function, compatible with delocalization. A main technical ingredient is the multiscale analysis of massless bosonic Gaussian integrations with purely imaginary covariances, performed via iterative stationary phase expansions.
Cite
@article{arxiv.1901.04617,
title = {A supersymmetric hierarchical model for weakly disordered $3d$ semimetals},
author = {Giovanni Antinucci and Luca Fresta and Marcello Porta},
journal= {arXiv preprint arXiv:1901.04617},
year = {2020}
}
Comments
74 pages, 2 figures, v3: Sections 3 and 4 expanded and restructured, typos corrected, references added