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Design and simulation of ultra-thin and high-efficiency silicon-based trichromatic PIN photodiode arrays for visible light communication
D. Gao,J. Zhang,F. Wang,J. Q. Liang and W. B. Wang
2020
发表期刊Optics Communications
ISSN0030-4018
卷号475页码:11
摘要Visible light communication offers abundant spectrum resources, which can alleviate the current shortage of wireless communication spectrum resources, and the security of the system is very reliable. In this study, a new photodiode (PD) array with micro-nano optical structure is designed and shown to effectively improve the absorption efficiency of PDs to blue, green, and red light. The absorption efficiency of blue, green, and red light at the central wavelength reached 96.8%, 97.5% and 98.6%, respectively, thus demonstrating the improved quantum efficiency of the device. Moreover, three color PDs are integrated into an ultra-thin silicon-on-insulator structure, increasing the integration and response speed of the device. The ultra-thin structure of the PD increases the response bandwidth up to the GHz level.
DOI10.1016/j.optcom.2020.126296
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收录类别SCI ; EI
语种英语
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文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/64411
专题中国科学院长春光学精密机械与物理研究所
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D. Gao,J. Zhang,F. Wang,J. Q. Liang and W. B. Wang. Design and simulation of ultra-thin and high-efficiency silicon-based trichromatic PIN photodiode arrays for visible light communication[J]. Optics Communications,2020,475:11.
APA D. Gao,J. Zhang,F. Wang,J. Q. Liang and W. B. Wang.(2020).Design and simulation of ultra-thin and high-efficiency silicon-based trichromatic PIN photodiode arrays for visible light communication.Optics Communications,475,11.
MLA D. Gao,J. Zhang,F. Wang,J. Q. Liang and W. B. Wang."Design and simulation of ultra-thin and high-efficiency silicon-based trichromatic PIN photodiode arrays for visible light communication".Optics Communications 475(2020):11.
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