高灵敏度SWIR APD接收机的研制

Xiaogang Bai, P. Yuan, James Chang, R. Sudharsanan, M. Krainak, Guangning Yang, Xiaoli Sun, W. Lu
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引用次数: 3

摘要

新兴的短波红外(SWIR)光探测与测距(LIDAR)和远程激光测距系统需要具有高灵敏度和高带宽的大光学孔径雪崩光电二极管(apd)接收器。较大的光孔径对于提高光耦合效率和扩大上述系统的激光雷达探测范围至关重要。为了实现高接收机灵敏度,需要降低APD过量噪声和跨阻放大器(TIA)噪声。大面积APD的暗电流和电容随着APD孔径的增大而增大,从而限制了接收机的灵敏度和带宽。Spectrolab多年来一直致力于开发具有冲击电离工程(I2E)设计的低过量噪声InAlAs/InGaAs APD,并在APD乘法器中使用多周期I2E结构,展示了光学增益超过100的APD。这些高增益I2E apd的多余噪声系数小于0.15。光学孔径为200 μm,低多余噪声的多周期I2E APD的电容约为1.7 pF。此外,基于InAlAs的APD的光学增益对温度的依赖性很小,并且可以使APD光电接收器无需热电冷却。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Development of high-sensitivity SWIR APD receivers
Emerging short wavelength infrared (SWIR) LIght Detection And Ranging (LIDAR) and long range laser rangefinder systems, require large optical aperture avalanche photodiodes (APDs) receivers with high sensitivity and high bandwidth. A large optical aperture is critical to increase the optical coupling efficiency and extend the LIDAR sensing range of the above systems. Both APD excess noise and transimpedance amplifier (TIA) noise need to be reduced in order to achieve high receiver sensitivity. The dark current and capacitance of large area APDs increase with APD aperture and thus limit the sensitivity and bandwidth of receivers. Spectrolab has been developing low excess noise InAlAs/InGaAs APDs with impact ionization engineering (I2E) designs for many years and has demonstrated APDs with optical gain over 100 utilizing multiple period I2E structures in the APD multiplier. These high gain I2E APDs have an excess noise factor less than 0.15. With an optical aperture of 200 μm, low excess noise multiple periods I2E APDs have capacitances about 1.7 pF. In addition, optical gains of InAlAs based APDs show very little temperature dependence and will enable APD photoreceivers without thermal electric cooling.
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