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Frequency-selective perovskite photodetector for anti-interference optical communications

Author

Listed:
  • Liangliang Min

    (Soochow University)

  • Haoxuan Sun

    (Soochow University)

  • Linqi Guo

    (Soochow University)

  • Meng Wang

    (Soochow University)

  • Fengren Cao

    (Soochow University)

  • Jun Zhong

    (Soochow University)

  • Liang Li

    (Soochow University)

Abstract

Free-space coupling, essential for various communication applications, often faces significant signal loss and interference from ambient light. Traditional methods rely on integrating complex optical and electronic systems, leading to bulkier and costlier communication equipment. Here, we show an asymmetric 2D–3D–2D perovskite structure device to achieve a frequency-selective photoresponse in a single device. By combining two electromotive forces of equal magnitude in the opposite directions, the device output is attenuated to zero under constant light illumination. Because these reverse photodiodes have different response speeds, the device only responds near a certain frequency, which can be tuned by manipulating the 2D perovskite components. The target device achieves an ultrafast response of 19.7/18.3 ns in the frequency-selective photoresponse range 0.8–9.7 MHz. This anti-interference photodetector can accurately transmit character and video data under strong light interference with a source intensity of up to 454 mW cm−2.

Suggested Citation

  • Liangliang Min & Haoxuan Sun & Linqi Guo & Meng Wang & Fengren Cao & Jun Zhong & Liang Li, 2024. "Frequency-selective perovskite photodetector for anti-interference optical communications," Nature Communications, Nature, vol. 15(1), pages 1-10, December.
  • Handle: RePEc:nat:natcom:v:15:y:2024:i:1:d:10.1038_s41467-024-46468-5
    DOI: 10.1038/s41467-024-46468-5
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