English

A Weyl Semimetal from AdS/CFT with Flavour

High Energy Physics - Theory 2021-05-31 v2

Abstract

We construct a top-down holographic model of Weyl semimetal states using (3+1)(3+1)-dimensional N=4\mathcal{N}=4 supersymmetric SU(Nc)SU(N_c) Yang-Mills theory, at large NcN_c and strong coupling, coupled to a number NfNcN_f \ll N_c of N=2\mathcal{N}=2 hypermultiplets with mass mm. A U(1)U(1) subgroup of the R-symmetry acts on the hypermultiplet fermions as an axial symmetry. In the presence of a constant external axial gauge field in a spatial direction, bb, we find the defining characteristic of a Weyl semi-metal: a quantum phase transition as m/bm/b increases, from a topological state with non-zero anomalous Hall conductivity to a trivial insulator. The transition is first order. Remarkably, the anomalous Hall conductivity is independent of the hypermultiplet mass, taking the value dictated by the axial anomaly. At non-zero temperature the transition remains first order, and the anomalous Hall conductivity acquires non-trivial dependence on the hypermultiplet mass and temperature.

Keywords

Cite

@article{arxiv.2012.11434,
  title  = {A Weyl Semimetal from AdS/CFT with Flavour},
  author = {Kazem Bitaghsir Fadafan and Andy O'Bannon and Ronnie Rodgers and Matthew Russell},
  journal= {arXiv preprint arXiv:2012.11434},
  year   = {2021}
}

Comments

31 pages + appendices, 22 figure files. v2: version published in JHEP

R2 v1 2026-06-23T21:08:27.714Z