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صفحه اصلی
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سی و دومین کنفرانس بین المللی مهندسی برق
A Graphene Terahertz Detector based on the Photo-Thermoelectric Effect with Frequency Selectivity
نویسندگان :
Faramarz Alihosseini
1
Zahra Heshmatpanah
2
Hesam Zandi
3
1- دانشگاه صنعتی خواجه نصیرالدین طوسی
2- دانشگاه صنعتی خواجه نصیرالدین طوسی
3- دانشگاه صنعتی خواجه نصیرالدین طوسی
کلمات کلیدی :
photo thermoelectric
چکیده :
We design a fast room-temperature terahertz detector based on the photo-thermoelectric effect. Our device takes full advantage of a novel approach to enhance the responsibility and coupling of the terahertz wave to the detector. High-performance photodetection was achieved by combining the localized surface plasmon resonance of dual grating gates with the resonant modes of a Fabry-Perot cavity configuration. This hybrid structure benefits from the near-perfect absorptance of graphene, owing to the strong interaction between terahertz radiation and the graphene layer. This notable absorption leads to an amplified thermal gradient across the graphene channel due to localized heat generation from terahertz wave absorption. In addition, dual grating gates are adopted to form a pn-junction, allowing for a non-uniform Seebeck coefficient along the channel. Consequently, the generated voltage along the channel, which corresponds to the temperature gradient and Seebeck coefficient, increases. By altering the geometrical parameters and two gate voltages, we are able to tune the detector's absorption. The simulation results indicate under the low grating gate voltages of ±0.2 V, the detector demonstrates a responsivity of 2.31 V/W and a noise-equivalent power (NEP) of 3.5 nW/√Hz at a resonant frequency of 1.55 THz.
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