English

Tilted Anisotropic Dirac Fermions in an Exponentially Decaying Magnetic Field

Mesoscale and Nanoscale Physics 2026-07-20 v1

Abstract

We develop an analytical theory of Landau quantization for tilted anisotropic Dirac fermions in an exponentially decaying magnetic field. Using anisotropy scaling and a Lorentz transformation, we recast the laboratory-frame problem into the isotropic Dirac equation in the boosted frame, where the exponentially decaying magnetic-field problem admits an exact solution. Transforming the boosted-frame spectrum back to the laboratory frame yields an implicit quantization condition with an intrinsically energy-dependent guiding-center parameter. We identify the conditions for physically admissible states. We further show that the formalism recovers the known uniform-field spectrum of tilted anisotropic Dirac fermions in the appropriate limit. Our results establish a unified Lorentz-covariant framework for describing Landau quantization in tilted anisotropic Dirac materials in the presence of an exponentially decaying magnetic field.

Keywords

Cite

@article{arxiv.2607.17676,
  title  = {Tilted Anisotropic Dirac Fermions in an Exponentially Decaying Magnetic Field},
  author = {Sushmita Saha and Alestin Mawrie},
  journal= {arXiv preprint arXiv:2607.17676},
  year   = {2026}
}

Comments

6 pages, 2 figures