Enhanced terahertz detection of multigate graphene nanostructures

Abstract: Terahertz (THz) waves have revealed a great potential for use in various fields and for a wide range of challenging applications. High-performance detectors are, however, vital for exploitation of THz technology. Graphene plasmonic THz detectors have proven to be promising optoelectronic devices, but improving their performance is still necessary. In this work, an asymmetric-dual-grating-gate graphene-terahertz-field-effect-transistor with a graphite back-gate was fabricated and characterized under illumination of 0.3 THz radiation in the temperature range from 4.5 K up to the room temperature. The device was fabricated as a sub-THz detector using a heterostructure of h-BN/Graphene/h-BN/Graphite to make a transistor with a double asymmetric-grating-top-gate and a continuous graphite back-gate. By biasing the metallic top-gates and the graphite back-gate, abrupt n+n (or p+p) or np (or pn) junctions with different potential barriers are formed along the graphene layer leading to enhancement of the THz rectified signal by about an order of magnitude. The plasmonic rectification for graphene containing np junctions is interpreted as due to the plasmonic electron-hole ratchet mechanism, whereas, for graphene with n+n junctions, rectification is attributed to the differential plasmonic drag effect. This work shows a new way of responsivity enhancement and paves the way towards new record performances of graphene THz nano-photodetectors.

Standort
Deutsche Nationalbibliothek Frankfurt am Main
Umfang
Online-Ressource
Sprache
Englisch

Erschienen in
Enhanced terahertz detection of multigate graphene nanostructures ; volume:11 ; number:3 ; year:2022 ; pages:519-529 ; extent:11
Nanophotonics ; 11, Heft 3 (2022), 519-529 (gesamt 11)

Urheber
Delgado-Notario, Juan A.
Knap, Wojciech
Clericò, Vito
Salvador-Sánchez, Juan
Calvo-Gallego, Jaime
Taniguchi, Takashi
Watanabe, Kenji
Otsuji, Taiichi
Popov, Vyacheslav V.
Fateev, Denis V.
Diez, Enrique
Velázquez-Pérez, Jesús Enrique
Meziani, Yahya M.

DOI
10.1515/nanoph-2021-0573
URN
urn:nbn:de:101:1-2022120813173032216083
Rechteinformation
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Letzte Aktualisierung
15.08.2025, 07:37 MESZ

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