Effect of a perpendicular magnetic field on bilayer graphene under dual gating
Abstract
By studying the impact of a perpendicular magnetic field on AB-bilayer graphene (AB-BLG) under dual gating, we yield several key findings for the ballistic transport of gate . Firstly, we discover that the presence of leads to a decrease in transmission. At a high value of , we notice the occurrence of anti-Klein tunneling over a significant area. Secondly, in contrast to the results reported in the literature, where high peaks were found with an increasing in-plane pseudomagnetic field applied to AB-BLG, we find a decrease in conductivity as increases. However, it is worth noting that in both cases, the number of oscillations decreases compared to the result in the study where no magnetic field was present . Thirdly, at the neutrality point, we demonstrate that the conductivity decreases and eventually reaches zero for a high value of , which contrasts with the result that the conductivity remains unchanged regardless of the value taken by the in-plane field. Finally, we consider the diffusive transport with gate and observe two scenarios. The amplitude of conductivity oscillations increases with for energy less than but decreases in the opposite case .
Keywords
Cite
@article{arxiv.2402.18399,
title = {Effect of a perpendicular magnetic field on bilayer graphene under dual gating},
author = {Mouhamadou Hassane Saley and Abderrahim El Mouhafid and Ahmed Jellal},
journal= {arXiv preprint arXiv:2402.18399},
year = {2024}
}
Comments
6 pages, 5 figures