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Noise Characteristic of AlGaN Based Solar-blind UV Avalanche Photodiodes

机译:AlGaN基日盲UV雪崩光电二极管的噪声特性

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摘要

A particular system for excess noise of avalanche photodiode (APD) measurement was build. Then the signal-noise ratio at different reverse voltage and the noise spectrum are measured and analyzed on different devices. First, the noise measurement system was constructed to fulfill the requirement that a high DC voltage can be applied on, and the measurement system was carefully shielded to protect from disturbance of electromagnetic radiations. Than we measured the noise spectrums of separate absorption and multiplication (SAM) type solar-blind APDs. The noise spectrums of SAM APDs which have different dark current levels were also measured. The results show that the low-frequency noise is dominant across a wide frequency range. And as the dark current goes higher, shot noise and low-frequency noise go higher at the same time. And the low-frequency noise will also takes more proportion in the spectrum when dark current goes higher. On the other hand, noise measurements at different reverse voltage and in either UV illumination or dark show that the excess noise factor increase faster as the gain increase. This leads to a decrease of signal-noise ratio at very high gain. In order to get a higher signal-noise ratio, a proper high gain should be adopted, rather than a gain "higher and better".
机译:建立了雪崩光电二极管(APD)测量中多余噪声的特定系统。然后在不同的设备上测量和分析了不同反向电压下的信噪比和噪声频谱。首先,构建噪声测量系统以满足可以施加高直流电压的要求,并仔细屏蔽测量系统以防止电磁辐射的干扰。比我们测量了独立吸收和倍增(SAM)型日盲APD的噪声频谱。还测量了具有不同暗电流水平的SAM APD的噪声频谱。结果表明,低频噪声在较宽的频率范围内占主导地位。随着暗电流的升高,散粒噪声和低频噪声同时升高。当暗电流变高时,低频噪声也将在频谱中占更多比例。另一方面,在不同反向电压下以及在紫外线照明或黑暗条件下的噪声测量结果表明,过量噪声因数随增益的增加而更快地增加。这导致在非常高的增益下信噪比的降低。为了获得更高的信噪比,应该采用适当的高增益,而不是“越来越高”的增益。

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