雪崩光电二极管
噪音(视频)
光电二极管
噪声系数
撞击电离
材料科学
光电子学
次声
灵敏度(控制系统)
雪崩二极管
噪声测量
电离
光学
物理
声学
降噪
电子工程
计算机科学
探测器
工程类
CMOS芯片
电压
人工智能
图像(数学)
离子
放大器
击穿电压
量子力学
作者
Adam A. Dadey,J. Andrew McArthur,Andrew H. Jones,Seth R. Bank,Joe C. Campbell
摘要
In applications where high sensitivity is required, the internal gain mechanism of avalanche photodiodes can provide a performance advantage relative to p-i-n photodiodes. However, this internal gain mechanism leads to an excess noise that scales with gain. This excess noise term can be minimized by using materials systems in which impact ionization is initiated primarily by one carrier type. Recently, two Sb-based materials systems, AlInAsSb and AlGaAsSb, have exhibited exceptionally low excess noise, particularly for III–V compound materials. There are four important considerations that can impact the excess noise measurements in such low-noise materials. These considerations deal with the excess noise factor calculation method, measurement RF frequency, measurement wavelength, and the gain calculation method. In this paper, each of these factors is discussed, and their implications on excess noise are considered.
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