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- W3159040321 abstract "The application fields of infrared photodetectors are quite extensive. Compared with traditional infrared photodetection materials such as IV and III–V semiconductors, newly emerging low‐dimensional materials and quantum materials (e.g., 2D materials and quantum wells) have many advantages in different aspects, such as wide spectral range, low dark current, room temperature operation, and high processing compatibility. However, the performance of photodetectors based on low‐dimensional materials is limited by the ultra small thicknesses, polarization selectivity, and the poor absorption efficiency. Therefore, improving the performance of infrared photodetectors based on low‐dimensional materials has been a focus research task in recent years. The integration of photonic structures can improve the performance of infrared photodetectors, such as enhancing absorption efficiency, reducing the volume of active materials, and increasing polarization selectivity. Herein, different kinds of photonic structure integrated infrared photodetectors, roughly divided into two categories, namely, dielectric photonic structure integrated ones and metallic photonic structure integrated ones, are reviewed. The active materials include 2D materials, quantum wells, quantum dots, and carbon nanotubes." @default.
- W3159040321 created "2021-05-10" @default.
- W3159040321 creator A5010795996 @default.
- W3159040321 creator A5032409461 @default.
- W3159040321 creator A5047344163 @default.
- W3159040321 creator A5064441029 @default.
- W3159040321 creator A5082496006 @default.
- W3159040321 creator A5087742179 @default.
- W3159040321 date "2021-07-04" @default.
- W3159040321 modified "2023-10-18" @default.
- W3159040321 title "Integrated Photonic Structure Enhanced Infrared Photodetectors" @default.
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