Efficient THz generation from low-temperature-grown GaAs photoconductive antennas driven by Yb-doped fiber amplifier at 200 kHz repetition rate - Archive ouverte HAL
Article Dans Une Revue Applied Physics Letters Année : 2023

Efficient THz generation from low-temperature-grown GaAs photoconductive antennas driven by Yb-doped fiber amplifier at 200 kHz repetition rate

Résumé

We demonstrate the generation of terahertz (THz) pulses with electric field strength reaching 34 kV/cm from low-temperature-grown GaAs (LT-GaAs) interdigitated photoconductive antennas driven by 1030 nm optical pulses delivered by a commercial ytterbium-doped fiber laser operating at a repetition rate of 200 kHz. By probing the Urbach absorption in LT-GaAs layers, we show that the THz generation mechanism predominantly relies on the photoexcitation of electrons from the valence band to shallow defect states arising from the incorporation of excess As during the growth process. Our THz source opens the route toward nonlinear time-resolved study of low-energy excitations in matter with high signal-to-noise ratios.
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Dates et versions

hal-04554859 , version 1 (24-04-2024)

Identifiants

Citer

Niloufar Nilforoushan, C. Kidd, Aurélie Fournier, José Palomo, Jérôme Tignon, et al.. Efficient THz generation from low-temperature-grown GaAs photoconductive antennas driven by Yb-doped fiber amplifier at 200 kHz repetition rate. Applied Physics Letters, 2023, 123 (24), pp.241107. ⟨10.1063/5.0179419⟩. ⟨hal-04554859⟩
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