Direct observation of locally modified excitonic effect within a moiré unit cell in twisted bilayer graphene

Fuente: arXiv
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Main Authors: Liu, Ming, Senga, Ryosuke, Koshino, Masanori, Lin, Yung-Chang, Suenaga, Kazu
Format: Preprint
Published: 2025
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_version_ 1866916831972818944
author Liu, Ming
Senga, Ryosuke
Koshino, Masanori
Lin, Yung-Chang
Suenaga, Kazu
author_facet Liu, Ming
Senga, Ryosuke
Koshino, Masanori
Lin, Yung-Chang
Suenaga, Kazu
contents Bilayer graphene, forming moiré superlattices, possesses distinct electronic and optical properties derived from the hybridization of energy band and the emergence of van Hove singularities depending on its twist angle. Extensive research has been conducted on the global characteristics of moiré superlattice induced by long-range periodicity. However, limited attention has been given to the local properties within a moiré unit cell, which undoubtedly differ due to the variations in three-dimensional atomic arrangement. Here we demonstrate the highly localized excitations of carbon 1s electrons to unoccupied van Hove singularities in a twisted bilayer graphene using an electron energy loss spectroscopy based on a monochromated transmission electron microscope. The core-level excitations associated with the van Hove singularities show a systematic twist angle dependence which is analogous to the optical excitations. Furthermore, local variations in those core-level van Hove singularity peaks within a moiré unit cell have been corroborated for the first time, which can originate from core-exciton lifetimes and band modifications influenced by the local stacking geometry.
format Preprint
id arxiv_https___arxiv_org_abs_2507_05560
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Direct observation of locally modified excitonic effect within a moiré unit cell in twisted bilayer graphene
Liu, Ming
Senga, Ryosuke
Koshino, Masanori
Lin, Yung-Chang
Suenaga, Kazu
Mesoscale and Nanoscale Physics
Materials Science
Bilayer graphene, forming moiré superlattices, possesses distinct electronic and optical properties derived from the hybridization of energy band and the emergence of van Hove singularities depending on its twist angle. Extensive research has been conducted on the global characteristics of moiré superlattice induced by long-range periodicity. However, limited attention has been given to the local properties within a moiré unit cell, which undoubtedly differ due to the variations in three-dimensional atomic arrangement. Here we demonstrate the highly localized excitations of carbon 1s electrons to unoccupied van Hove singularities in a twisted bilayer graphene using an electron energy loss spectroscopy based on a monochromated transmission electron microscope. The core-level excitations associated with the van Hove singularities show a systematic twist angle dependence which is analogous to the optical excitations. Furthermore, local variations in those core-level van Hove singularity peaks within a moiré unit cell have been corroborated for the first time, which can originate from core-exciton lifetimes and band modifications influenced by the local stacking geometry.
title Direct observation of locally modified excitonic effect within a moiré unit cell in twisted bilayer graphene
topic Mesoscale and Nanoscale Physics
Materials Science
url https://arxiv.org/abs/2507.05560