Cavity-enhanced photo-thermoelectric response in graphene under cyclotron resonance

We investigated the photo-thermoelectric response of Landau-quantized graphene in an infrared optical cavity structure. High-quality graphene/h-BN heterostructure was fabricated on a TiO2/Au optical cavity. We observed a large enhancement of the photo-thermoelectric voltage when the energy of the in...

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Veröffentlicht in:Applied physics letters 2024-08, Vol.125 (9)
Hauptverfasser: Park, Sabin, Moriya, Rai, Hayashi, Kenjiro, Fushimi, Naoki, Onodera, Momoko, Zhang, Yijin, Watanabe, Kenji, Taniguchi, Takashi, Kondo, Daiyu, Sato, Shintaro, Machida, Tomoki
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Sprache:eng
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Zusammenfassung:We investigated the photo-thermoelectric response of Landau-quantized graphene in an infrared optical cavity structure. High-quality graphene/h-BN heterostructure was fabricated on a TiO2/Au optical cavity. We observed a large enhancement of the photo-thermoelectric voltage when the energy of the inter-Landau-level optical absorption, so-called cyclotron resonance, was coincident with that of the cavity mode. This is due to cavity-enhanced cyclotron resonance absorption of mid-infrared light. A maximum photovoltage responsivity of ∼107 V/W was obtained at a wavelength of 9.27 μm under a magnetic field as low as ∼1 Tesla. The obtained responsivity was significantly higher than that of conventional graphene devices. Our results provide an efficient photo-thermoelectric conversion scheme that utilizes Landau-quantized graphene and an optical cavity.
ISSN:0003-6951
1077-3118
DOI:10.1063/5.0213435