Electronic states in a quantum Beltrami surface
arXiv:2308.07285 · doi:10.1016/j.physleta.2023.129065
Abstract
In this paper, we investigate the influence of the geometry in the electronic states of a quantum Beltrami surface. We have considered an electron governed by the spinless stationary Schrödinger equation constrained to move on the Beltrami surface due to a confining potential from which the Da Costa potential emerges. We investigate the role played by the geometry and orbital angular momentum on the electronic states of the system.
6 pages, 7 figures, two column. Matches version to appear in Physics Letters A
References in corpus (7)
- The electronic properties of graphene
- Making Sense of Non-Hermitian Hamiltonians
- Graphene wormholes: A condensed matter illustration of Dirac fermions in curved space
- Weyl-Gauge Symmetry of Graphene
- Curved Spacetimes and Curved Graphene: a status report of the Weyl-symmetry approach
- Bilayer graphene Origami: curvature-induced p-n junctions
- Negative-curvature spacetime solutions for graphene