Polarization-sensitive self-powered ultraviolet detection and image encryption enabled by RbCu2I3/SiC heterostructure

Polarization-sensitive self-powered ultraviolet photodetectors are of great significance for advanced target recognition, machine vision, and artificial intelligence, particularly in complex optical environments where multidimensional information extraction is critical. We report a self-powered photodetector exploiting a RbCu2I3/SiC heterojunction, which affords concurrent ultraviolet spectral discrimination and polarization-resolved detection without external bias. At zero bias and 310 nm excitation, the device simultaneously achieves a light-to-dark-current ratio ∼106, a responsivity of 240 mA/W, a detectivity of 9 ×1013 Jones, a microsecond-scale transient response (τrise/τfall = 315/515 μs), and an exceptional dichroic ratio of 8.9. Collectively, these specifications establish a new performance benchmark, significantly surpassing not only commercially available all-inorganic photodetectors but also the most advanced laboratory-scale counterparts reported to date. The superior photodetection of RbCu2I3/SiC originates from the synergistic interplay of RbCu2I3's intrinsic anisotropic carrier mobility and favorable type-II band alignment, which together yield an ultralow dark current (nA-level), a high rectification ratio (∼104), and efficient spatial separation and unidirectional transport of photocarriers. Leveraging these advantages, we further demonstrate a polarization-resolved image encryption–decryption system integrated with a convolutional neural network, achieving a decryption accuracy of 98.1%. This work highlights the transformative potential of RbCu2I3/SiC heterostructures for next-generation multifunctional optoelectronics and secure optical communication, opening new avenues for intelligent photonic systems.

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Journal
Applied Physics Letters
Published
2026-09-28
DOI
https://doi.org/10.1063/5.0354957
Primary Topic
2D Materials and Applications
Type
article
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Polarization-sensitive self-powered ultraviolet detection and image encryption enabled by RbCu2I3/SiC heterostructure

ZhiPeng Sun, Caixia Kan, Mingming Jiang, Peng Wan et al.
Applied Physics Letters
2D Materials and Applications
article

Polarization-sensitive self-powered ultraviolet detection and image encryption enabled by RbCu2I3/SiC heterostructure

ZhiPeng Sun, Caixia Kan, Mingming Jiang, Peng Wan, Chengyu Luan, Yalin Zhai, Daning Shi, Quantao Jia
article en

Abstract

Polarization-sensitive self-powered ultraviolet photodetectors are of great significance for advanced target recognition, machine vision, and artificial intelligence, particularly in complex optical environments where multidimensional information extraction is critical. We report a self-powered photodetector exploiting a RbCu2I3/SiC heterojunction, which affords concurrent ultraviolet spectral discrimination and polarization-resolved detection without external bias. At zero bias and 310 nm excitation, the device simultaneously achieves a light-to-dark-current ratio ∼106, a responsivity of 240 mA/W, a detectivity of 9 ×1013 Jones, a microsecond-scale transient response (τrise/τfall = 315/515 μs), and an exceptional dichroic ratio of 8.9. Collectively, these specifications establish a new performance benchmark, significantly surpassing not only commercially available all-inorganic photodetectors but also the most advanced laboratory-scale counterparts reported to date. The superior photodetection of RbCu2I3/SiC originates from the synergistic interplay of RbCu2I3's intrinsic anisotropic carrier mobility and favorable type-II band alignment, which together yield an ultralow dark current (nA-level), a high rectification ratio (∼104), and efficient spatial separation and unidirectional transport of photocarriers. Leveraging these advantages, we further demonstrate a polarization-resolved image encryption–decryption system integrated with a convolutional neural network, achieving a decryption accuracy of 98.1%. This work highlights the transformative potential of RbCu2I3/SiC heterostructures for next-generation multifunctional optoelectronics and secure optical communication, opening new avenues for intelligent photonic systems.

Applied Physics LettersVol. 129(13)
Second Military Medical University (CN), Nanjing University of Aeronautics and Astronautics (CN)
Reduced inequalities, Peace, Justice and strong institutions
Openalex Percentile: Top 26%
2D Materials and Applications
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