Frequency down-conversion of terahertz waves at optically induced temporal boundaries in GaAs waveguides

Abstract: In this study, the frequency down-conversion of terahertz waves is analytically and experimentally demonstrated at the temporal boundaries within a GaAs waveguide. The temporal boundary is established by photoexciting the top surface of the waveguide, thereby instantaneously increasing its electrical conductivity. This photoexcited waveguide supports a transverse electromagnetic (TEM) mode with a frequency lower than those of the transverse magnetic (TM) modes present in the original waveguide. At the temporal boundary, the incident TM mode couples with the TEM mode, resulting in frequency down-conversion. Subtracting the propagation loss from the frequency-converted components indicates that the frequency conversion occurs with an efficiency consistent with the analytical predictions. The propagation loss is primarily due to ohmic loss, caused by the finite electrical conductivity of the photoexcited region. Given that the frequency of transverse electric modes is up-converted at the temporal boundary, our findings suggest that the direction of frequency conversion (upward or downward) can be controlled by manipulating the incident polarization. The polarization-dependent frequency conversion in waveguides holds significant potential for applications in devices designed for the interconversion of terahertz signals across various frequency channels. This capability is instrumental in the development of frequency-division-multiplexed terahertz wave communication systems, thereby enabling high data transfer rates.

Location
Deutsche Nationalbibliothek Frankfurt am Main
Extent
Online-Ressource
Language
Englisch

Bibliographic citation
Frequency down-conversion of terahertz waves at optically induced temporal boundaries in GaAs waveguides ; volume:13 ; number:17 ; year:2024 ; pages:3077-3089 ; extent:13
Nanophotonics ; 13, Heft 17 (2024), 3077-3089 (gesamt 13)

Creator
Takano, Keisuke
Uchiyama, Satoko
Nagase, Shintaro
Tsuchimoto, Yuka
Nakanishi, Toshihiro
Nakata, Yosuke
Pérez-Urquizo, Joel
Madéo, Julien
Dani, Keshav M.
Miyamaru, Fumiaki

DOI
10.1515/nanoph-2024-0010
URN
urn:nbn:de:101:1-2407241754091.851993158694
Rights
Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
Last update
14.08.2025, 10:55 AM CEST

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Associated

  • Takano, Keisuke
  • Uchiyama, Satoko
  • Nagase, Shintaro
  • Tsuchimoto, Yuka
  • Nakanishi, Toshihiro
  • Nakata, Yosuke
  • Pérez-Urquizo, Joel
  • Madéo, Julien
  • Dani, Keshav M.
  • Miyamaru, Fumiaki

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