English

Nonlinear planar magnetotransport due to tilted Dirac cones in topological materials

Mesoscale and Nanoscale Physics 2023-10-03 v1

Abstract

Nonlinear planar magnetotransport is ubiquitous in topological HgTe structures, both in tensile (topological insulator) or compressively strained layers (Weyl semimetal phase). We show that the common reason for the nonlinear planar magnetotransport is the presence of tilted Dirac cones combined with the formation of charge puddles. The origin of the tilted Dirac cones is the mix of the Zeeman term due to the in-plane magnetic field and quadratic contributions to the dispersion relation. We develop a network model that mimics transport of tilted Dirac fermions in the landscape of charge puddles. The model captures the essential features of the experimental data. It should be relevant for nonlinear planar magnetotransport in a variety of topological and small band gap materials.

Keywords

Cite

@article{arxiv.2307.08645,
  title  = {Nonlinear planar magnetotransport due to tilted Dirac cones in topological materials},
  author = {Arya Thenapparambil and Graciely Elias dos Santos and Chang-An Li and Mohamed Abdelghany and Wouter Beugeling and Hartmut Buhmann and Charles Gould and Song-Bo Zhang and Björn Trauzettel and Laurens W. Molenkamp},
  journal= {arXiv preprint arXiv:2307.08645},
  year   = {2023}
}

Comments

12 pages, 11 figures, 1 table