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Fast and Sensitive Terahertz Detection Using an Antenna-Integrated Graphene pn Junction
Castilla, Sebastián (Institut de Ciències Fotòniques)
Terrés, Bernat (Institut de Ciències Fotòniques)
Autore, Marta (CIC nanoGUNE (Sant Sebastià, País Basc))
Viti, Leonardo (Istituto Nanoscienze and Scuola Normale Superiore)
Li, Jian (Nanjing University)
Nikitin, Alexey Y. (IKERBASQUE)
Vangelidis, Ioannis (University of Ioannina. Department of Materials Science and Engineering)
Watanabe, Kenji (National Institute for Material Science (Tsukuba, Japan))
Taniguchi, Takashi (National Institute for Material Science (Tsukuba, Japan))
Lidorikis, Elefterios (University of Ioannina. Department of Materials Science and Engineering)
Vitiello, Miriam S. (Istituto Nanoscienze and Scuola Normale Superiore)
Hillenbrand, Rainer (IKERBASQUE)
Tielrooij, Klaas-Jan (Institut Català de Nanociència i Nanotecnologia)
Koppens, Frank (Institut de Ciències Fotòniques)

Fecha: 2019
Resumen: Although the detection of light at terahertz (THz) frequencies is important for a large range of applications, current detectors typically have several disadvantages in terms of sensitivity, speed, operating temperature, and spectral range. Here, we use graphene as a photoactive material to overcome all of these limitations in one device. We introduce a novel detector for terahertz radiation that exploits the photothermoelectric (PTE) effect, based on a design that employs a dual-gated, dipolar antenna with a gap of ?100 nm. This narrow-gap antenna simultaneously creates a pn junction in a graphene channel located above the antenna and strongly concentrates the incoming radiation at this pn junction, where the photoresponse is created. We demonstrate that this novel detector has an excellent sensitivity, with a noise-equivalent power of 80 pW/Hz at room temperature, a response time below 30 ns (setup-limited), a high dynamic range (linear power dependence over more than 3 orders of magnitude) and broadband operation (measured range 1. 8-4. 2 THz, antenna-limited), which fulfills a combination that is currently missing in the state-of-the-art detectors. Importantly, on the basis of the agreement we obtained between experiment, analytical model, and numerical simulations, we have reached a solid understanding of how the PTE effect gives rise to a THz-induced photoresponse, which is very valuable for further detector optimization.
Ayudas: Ministerio de Economía y Competitividad SEV-2015-0522
Agència de Gestió d'Ajuts Universitaris i de Recerca 2017/SGR-1656
European Commission 785219
Ministerio de Economía y Competitividad SEV-2017-0706
Ministerio de Economía y Competitividad FIS2014-59639-JIN
European Commission 681379
Agencia Estatal de Investigación MAT2017-88358-C3-3-R
Ministerio de Economía y Competitividad MDM-2016-0618
Derechos: Aquest material està protegit per drets d'autor i/o drets afins. Podeu utilitzar aquest material en funció del que permet la legislació de drets d'autor i drets afins d'aplicació al vostre cas. Per a d'altres usos heu d'obtenir permís del(s) titular(s) de drets.
Lengua: Anglès
Documento: Article ; recerca ; Versió acceptada per publicar
Materia: Photodetector ; THz ; Graphene ; Antenna ; Pn junction ; Fast detection
Publicado en: Nano letters, Vol. 19, Issue 5 (May 2019) , p. 2765-2773, ISSN 1530-6992

DOI: 10.1021/acs.nanolett.8b04171
PMID: 30882226


Postprint
27 p, 5.7 MB

El registro aparece en las colecciones:
Documentos de investigación > Documentos de los grupos de investigación de la UAB > Centros y grupos de investigación (producción científica) > Ciencias > Institut Català de Nanociència i Nanotecnologia (ICN2)
Artículos > Artículos de investigación
Artículos > Artículos publicados

 Registro creado el 2020-02-06, última modificación el 2025-12-29



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