Direkt zum Inhalt

Matyushkin, Yakov ; Danilov, Sergey ; Moskotin, Maxim ; Belosevich, Vsevolod ; Kaurova, Natalia ; Rybin, Maxim ; Obraztsova, Elena D. ; Fedorov, Georgy ; Gorbenko, Ilya ; Kachorovskii, Valentin ; Ganichev, Sergey

Helicity-Sensitive Plasmonic Terahertz Interferometer

Artikel

Matyushkin, Yakov , Danilov, Sergey, Moskotin, Maxim, Belosevich, Vsevolod, Kaurova, Natalia, Rybin, Maxim , Obraztsova, Elena D., Fedorov, Georgy, Gorbenko, Ilya , Kachorovskii, Valentin und Ganichev, Sergey (2020) Helicity-Sensitive Plasmonic Terahertz Interferometer. Nano Letters 20 (10), S. 7296-7303.

DOI zum Zitieren dieses Dokuments: 10.5283/epub.52006


Zusammenfassung

Plasmonic interferometry is a rapidly growing area of research with a huge potential for applications in the terahertz frequency range. In this Letter, we explore a plasmonic interferometer based on graphene field effect transistor connected to specially designed antennas. As a key result, we observe helicity- and phase-sensitive conversion of circularly polarized radiation into dc photovoltage ...

Plasmonic interferometry is a rapidly growing area of research with a huge potential for applications in the terahertz frequency range. In this Letter, we explore a plasmonic interferometer based on graphene field effect transistor connected to specially designed antennas. As a key result, we observe helicity- and phase-sensitive conversion of circularly polarized radiation into dc photovoltage caused by the plasmon-interference mechanism: two plasma waves, excited at the source and drain part of the transistor, interfere inside the channel. The helicity-sensitive phase shift between these waves is achieved by using an asymmetric antenna configuration. The dc signal changes sign with inversion of the helicity. A suggested plasmonic interferometer is capable of measuring the phase difference between two arbitrary phase-shifted optical signals. The observed effect opens a wide avenue for phase-sensitive probing of plasma wave excitations in two-dimensional materials.



Beteiligte Einrichtungen


Details

DokumentenartArtikel
Titel eines Journals oder einer ZeitschriftNano Letters
VerlagAMER CHEMICAL SOC
Open Access ArtKein Open Access
Ort der VeröffentlichungWASHINGTON
Band20
Nummer des Zeitschriftenheftes oder des Kapitels10
SeitenbereichS. 7296-7303
Datum9 September 2020
Veröffentlichungsdatum30 Mrz 2022 12:41
InstitutionenPhysik > Institut für Experimentelle und Angewandte Physik > Professor Ganichev > Arbeitsgruppe Sergey Ganichev
Identifikationsnummer
WertTyp
10.1021/acs.nanolett.0c02692DOI
Stichwörter / Keywords; plasmonic interferometer; terahertz radiation; radiation helicity; graphene
Dewey-Dezimal-Klassifikation500 Naturwissenschaften und Mathematik > 530 Physik
StatusVeröffentlicht
BegutachtetJa, diese Version wurde begutachtet
An der Universität Regensburg entstandenJa
Dokumenten-ID52006

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