Transmissions in gapped graphene exposed to tilting and oscillating barriers

Fuente: arXiv
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Main Authors: Mekkaoui, Miloud, Jellal, Ahmed, Mouhafid, Abderrahim El
Format: Preprint
Published: 2023
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author Mekkaoui, Miloud
Jellal, Ahmed
Mouhafid, Abderrahim El
author_facet Mekkaoui, Miloud
Jellal, Ahmed
Mouhafid, Abderrahim El
contents We investigate the transmissions of fermions through gapped graphene structures by employing a combination of double barrier tilting and a time-oscillating potential. The latter introduces additional sidebands into the transmission probability, which manifest at energy levels determined by the frequency and incident energy. These sidebands arise from the absorption or emission of photons generated by the oscillating potential. We demonstrate that the tilting and positioning of the scattering events within the barriers play a crucial role in determining the peak of tunneling resistance. In particular, the presence of a mid-barrier-embedded scatter leads to a transition from a peak to a cusp when the incident energy reaches the Dirac point within a barrier. Additionally, we illustrate that introducing a time-varying potential results in transmissions dispersing across both the central band and the sidebands.
format Preprint
id arxiv_https___arxiv_org_abs_2304_10332
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Transmissions in gapped graphene exposed to tilting and oscillating barriers
Mekkaoui, Miloud
Jellal, Ahmed
Mouhafid, Abderrahim El
Mesoscale and Nanoscale Physics
We investigate the transmissions of fermions through gapped graphene structures by employing a combination of double barrier tilting and a time-oscillating potential. The latter introduces additional sidebands into the transmission probability, which manifest at energy levels determined by the frequency and incident energy. These sidebands arise from the absorption or emission of photons generated by the oscillating potential. We demonstrate that the tilting and positioning of the scattering events within the barriers play a crucial role in determining the peak of tunneling resistance. In particular, the presence of a mid-barrier-embedded scatter leads to a transition from a peak to a cusp when the incident energy reaches the Dirac point within a barrier. Additionally, we illustrate that introducing a time-varying potential results in transmissions dispersing across both the central band and the sidebands.
title Transmissions in gapped graphene exposed to tilting and oscillating barriers
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2304.10332