Moir{é} pattern assisted geometric resonant tunneling in disordered twisted bilayer graphene

Fuente: arXiv
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Main Authors: Hou, Zhe, Hu, Ya-Yun, Yang, Guang-Wen
Format: Preprint
Published: 2023
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author Hou, Zhe
Hu, Ya-Yun
Yang, Guang-Wen
author_facet Hou, Zhe
Hu, Ya-Yun
Yang, Guang-Wen
contents We investigate the mesoscopic transport through a twisted bilayer graphene (TBG) consisting of a clean graphene nanoribbon on the bottom and a disordered graphene disc on the top. We show that, with strong top-layer disorder the transmission through such a device shows a sequence of resonant peaks with respect to the rotation angle $θ$, where at the resonance angles $θ_c$ the disc region contains one giant hexagonal moir{é} supercell. A further investigation shows that the value of $θ_c$ shows negligible dependence on the disorder strength, the Fermi energy, and the shape distortion, indicating the resonance is a robust geometric feature of the moir{é} supercell. We explain this geometric resonance based on the bound states formed inside the moir{é} supercell, with their averaged local density of states dominating at the AA stacking region while minimizing at the AB stacking region. By increasing the interlayer distance, the peak becomes less pronounced which further confirms the role of interlayer coupling. The results presented here suggest a new mechanism to tune the quantum transport signal through the twist angle in disordered moir{é} systems.
format Preprint
id arxiv_https___arxiv_org_abs_2307_09587
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Moir{é} pattern assisted geometric resonant tunneling in disordered twisted bilayer graphene
Hou, Zhe
Hu, Ya-Yun
Yang, Guang-Wen
Mesoscale and Nanoscale Physics
We investigate the mesoscopic transport through a twisted bilayer graphene (TBG) consisting of a clean graphene nanoribbon on the bottom and a disordered graphene disc on the top. We show that, with strong top-layer disorder the transmission through such a device shows a sequence of resonant peaks with respect to the rotation angle $θ$, where at the resonance angles $θ_c$ the disc region contains one giant hexagonal moir{é} supercell. A further investigation shows that the value of $θ_c$ shows negligible dependence on the disorder strength, the Fermi energy, and the shape distortion, indicating the resonance is a robust geometric feature of the moir{é} supercell. We explain this geometric resonance based on the bound states formed inside the moir{é} supercell, with their averaged local density of states dominating at the AA stacking region while minimizing at the AB stacking region. By increasing the interlayer distance, the peak becomes less pronounced which further confirms the role of interlayer coupling. The results presented here suggest a new mechanism to tune the quantum transport signal through the twist angle in disordered moir{é} systems.
title Moir{é} pattern assisted geometric resonant tunneling in disordered twisted bilayer graphene
topic Mesoscale and Nanoscale Physics
url https://arxiv.org/abs/2307.09587