Nano-imaging photoresponse in a moiré unit cell of minimally twisted bilayer graphene

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hdl:2117/427702
Document typeArticle
Defense date2021-03-12
Rights accessOpen Access
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Attribution 4.0 International
ProjectNANO-VISUALIZACION EN THZ DE MATERIALES 2D RETORCIDOS (AEI-PID2019-106875GB-I00)
GrapheneCore3 - Graphene Flagship Core Project 3 (EC-H2020-881603)
TOPONANOP - Topological nano-photonics (EC-H2020-726001)
ICFOstepstone - ICFOstepstone PhD Programme for Early-Stage Researchers in Photonics (EC-H2020-665884)
GrapheneCore3 - Graphene Flagship Core Project 3 (EC-H2020-881603)
TOPONANOP - Topological nano-photonics (EC-H2020-726001)
ICFOstepstone - ICFOstepstone PhD Programme for Early-Stage Researchers in Photonics (EC-H2020-665884)
Abstract
Graphene-based moiré superlattices have recently emerged as a unique class of tuneable solid-state systems that exhibit significant optoelectronic activity. Local probing at length scales of the superlattice should provide deeper insight into the microscopic mechanisms of photoresponse and the exact role of the moiré lattice. Here, we employ a nanoscale probe to study photoresponse within a single moiré unit cell of minimally twisted bilayer graphene. Our measurements reveal a spatially rich photoresponse, whose sign and magnitude are governed by the fine structure of the moiré lattice and its orientation with respect to measurement contacts. This results in a strong directional effect and a striking spatial dependence of the gate-voltage response within the moiré domains. The spatial profile and carrierdensity dependence of the measured photocurrent point towards a photo-thermoelectric induced response that is further corroborated by good agreement with numerical simulations. Our work shows sub-diffraction photocurrent spectroscopy is an exceptional tool for uncovering the optoelectronic properties of moiré superlattices.
CitationHesp, N. [et al.]. Nano-imaging photoresponse in a moiré unit cell of minimally twisted bilayer graphene. "Nature communications", 12 Març 2021, vol. 12, núm. article 1640.
ISSN2041-1723
Publisher versionhttps://www.nature.com/articles/s41467-021-21862-5
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