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Depolarization ratio measurement using single photomultiplier tube in micropulse lidar

机译:在微脉冲激光雷达中使用单光电倍增管测量消偏振比

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摘要

The conventional dual polarization micropulse lidar uses two separate photomultiplier tubes (PMT) to detect both the copolarized and cross-polarized beam. The prominent sources of error in the depolarization ratio measurement are mismatch in PMT, improper selection of discriminator threshold and unequal PMT high voltage. In the present work a technique for the measurement of lidar depolarization ratio using only one PMT sensor has been developed. The same PMT detects both copolarized and cross-polarized lidar backscatter. A stepper motor is used along with the mirrors to bring both the received polarization signals over the PMT window. Application of the same PMT minimizes the error caused in the depolarization ratio measurement due to error in photon counting of an individual channel. The design description of this technique along with the preliminary results depicting its functionality has been mentioned in this article.
机译:常规的双极化微脉冲激光雷达使用两个单独的光电倍增管(PMT)来检测同极化光束和交叉极化光束。去极化比测量中的主要误差源是PMT不匹配,鉴别器阈值选择不当以及不相等的PMT高电压。在本工作中,已经开发了仅使用一个PMT传感器测量激光雷达消极率的技术。相同的PMT可以检测到共极化和交叉极化的激光雷达后向散射。步进电机与反射镜一起使用,以将接收到的两个偏振信号都通过PMT窗口。相同PMT的应用可将由于单个通道的光子计数误差引起的去极化比测量中的误差降至最低。本文已经提到了该技​​术的设计说明以及描述其功能的初步结果。

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