Plasmon induced thermoelectric effect in graphene

The photoresponse of graphene-based photodetectors is dominated by photovoltaic and photothermoelectric effects. Here, the authors leverage strongly localised plasmonic heating of graphene carriers to detect a second photothermoelectric effect occurring across a homogeneous channel in the presence o...

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Main Authors: Viktoryia Shautsova, Themistoklis Sidiropoulos, Xiaofei Xiao, Nicholas A. Güsken, Nicola C. G. Black, Adam M. Gilbertson, Vincenzo Giannini, Stefan A. Maier, Lesley F. Cohen, Rupert F. Oulton
Format: Article
Language:English
Published: Nature Publishing Group 2018-12-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-018-07508-z
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spelling doaj-a7824fdf2c394e4db85d706cb154a87b2021-05-11T09:43:41ZengNature Publishing GroupNature Communications2041-17232018-12-01911910.1038/s41467-018-07508-zPlasmon induced thermoelectric effect in grapheneViktoryia Shautsova0Themistoklis Sidiropoulos1Xiaofei Xiao2Nicholas A. Güsken3Nicola C. G. Black4Adam M. Gilbertson5Vincenzo Giannini6Stefan A. Maier7Lesley F. Cohen8Rupert F. Oulton9Blackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeBlackett Laboratory, Imperial CollegeThe photoresponse of graphene-based photodetectors is dominated by photovoltaic and photothermoelectric effects. Here, the authors leverage strongly localised plasmonic heating of graphene carriers to detect a second photothermoelectric effect occurring across a homogeneous channel in the presence of an electronic temperature gradient.https://doi.org/10.1038/s41467-018-07508-z
collection DOAJ
language English
format Article
sources DOAJ
author Viktoryia Shautsova
Themistoklis Sidiropoulos
Xiaofei Xiao
Nicholas A. Güsken
Nicola C. G. Black
Adam M. Gilbertson
Vincenzo Giannini
Stefan A. Maier
Lesley F. Cohen
Rupert F. Oulton
spellingShingle Viktoryia Shautsova
Themistoklis Sidiropoulos
Xiaofei Xiao
Nicholas A. Güsken
Nicola C. G. Black
Adam M. Gilbertson
Vincenzo Giannini
Stefan A. Maier
Lesley F. Cohen
Rupert F. Oulton
Plasmon induced thermoelectric effect in graphene
Nature Communications
author_facet Viktoryia Shautsova
Themistoklis Sidiropoulos
Xiaofei Xiao
Nicholas A. Güsken
Nicola C. G. Black
Adam M. Gilbertson
Vincenzo Giannini
Stefan A. Maier
Lesley F. Cohen
Rupert F. Oulton
author_sort Viktoryia Shautsova
title Plasmon induced thermoelectric effect in graphene
title_short Plasmon induced thermoelectric effect in graphene
title_full Plasmon induced thermoelectric effect in graphene
title_fullStr Plasmon induced thermoelectric effect in graphene
title_full_unstemmed Plasmon induced thermoelectric effect in graphene
title_sort plasmon induced thermoelectric effect in graphene
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2018-12-01
description The photoresponse of graphene-based photodetectors is dominated by photovoltaic and photothermoelectric effects. Here, the authors leverage strongly localised plasmonic heating of graphene carriers to detect a second photothermoelectric effect occurring across a homogeneous channel in the presence of an electronic temperature gradient.
url https://doi.org/10.1038/s41467-018-07508-z
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