列出关于光电探测器设计的论文
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"Design and characterization of a high-sensitivity silicon photodiode for low-light-level detection" - This paper presents the design and characterization of a high-sensitivity silicon photodiode for low-light-level detection. The authors discuss the optimization of the photodiode structure to achieve high quantum efficiency and low dark current, making it suitable for applications such as astronomical imaging and fluorescence spectroscopy.
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"Design and performance analysis of a novel graphene-based photodetector" - This paper proposes a novel design for a graphene-based photodetector and presents its performance analysis. The authors discuss the advantages of using graphene as the active material in photodetectors, such as its high carrier mobility and broadband absorption characteristics. The proposed design aims to enhance the device's responsivity and speed while reducing noise and power consumption.
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"Design and optimization of a photomultiplier tube for gamma-ray detection" - This paper focuses on the design and optimization of a photomultiplier tube (PMT) for gamma-ray detection. The authors discuss the considerations and challenges in designing a PMT with high gain, low noise, and good timing resolution. They also present the results of experimental tests and simulations to validate the performance of the designed PMT for gamma-ray detection.
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"Design and fabrication of a CMOS image sensor with high dynamic range" - This paper presents the design and fabrication of a complementary metal-oxide-semiconductor (CMOS) image sensor with high dynamic range. The authors discuss the techniques used to overcome the limitations of conventional CMOS image sensors, such as limited dynamic range and noise. The proposed design aims to achieve a wide dynamic range, high sensitivity, and low noise performance for imaging applications in challenging lighting conditions.
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"Design and performance evaluation of a fiber optic sensor for strain measurement" - This paper describes the design and performance evaluation of a fiber optic sensor for strain measurement. The authors discuss the principles of operation and the design considerations for developing a strain sensor based on fiber optic technology. They also present the experimental results of strain measurement using the designed sensor and compare its performance with traditional strain gauges
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