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Atmospheric CO_2 remote sensing system based on high brightness semiconductor lasers and single photon counting detection

机译:基于高亮度半导体激光器和单光子计数检测的大气CO_2遥感系统

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We propose an integrated path differential absorption lidar system based on all-semiconductor laser sources and single photon counting detection for column-averaged measurements of atmospheric CO_2. The Random Modulated Continuous Wave (RM-CW) approach has been selected as the best suited to semiconductor lasers. In a RM-CW lidar, a pseudo random sequence is sent to the atmosphere and the received signal reflected from the target is correlated with the original sequence in order to retrieve the path length. The transmitter design is based on two monolithic Master Oscillator Power Amplifiers (MOPAs), providing the on-line and off-line wavelengths close to the selected absorption line around 1.57 μm. Each MOPA consists of a frequency stabilized distributed feedback master oscillator, a bent modulator section, and a tapered amplifier. This design allows the emitters to deliver high power and high quality laser beams with good spectral properties. An output power above 400 mW with a SMSR higher than 45 dB and modulation capability have been demonstrated. On the side of the receiver, our theoretical and experimental results indicate that the major noise contribution comes from the ambient light and detector noise. For this reason narrow band optical filters are required in the envisioned space-borne applications. In this contribution, we present the latest progresses regarding the design, modelling and characterization of the transmitter, the receiver, the frequency stabilization unit and the complete system.
机译:我们提出了一种基于全半导体激光源和单光子计数检测的集成路径差分吸收激光雷达系统,用于大气CO_2的列平均测量。随机调制连续波(RM-CW)方法已被选为最适合半导体激光器的方法。在RM-CW激光雷达中,伪随机序列被发送到大气层,并且从目标反射的接收信号与原始序列相关联,以获取路径长度。发射器设计基于两个单片主振荡器功率放大器(MOPA),可提供接近所选吸收线1.57μm的在线和离线波长。每个MOPA包括一个频率稳定的分布式反馈主振荡器,一个弯曲的调制器部分和一个锥形放大器。这种设计使发射器可以发射具有良好光谱特性的高功率和高质量激光束。已经证明了高于400 mW的输出功率和超过45 dB的SMSR和调制能力。在接收器一侧,我们的理论和实验结果表明,主要的噪声贡献来自环境光和检测器噪声。因此,在预想的星载应用中需要窄带滤光片。在此贡献中,我们介绍了有关发射器,接收器,频率稳定单元和整个系统的设计,建模和特性的最新进展。

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