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A flexible eye-safe lidar instrument for elastic-backscatter and DIAL

机译:弹性背散和拨号的灵活的眼睛安全激光仪仪器

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Developments in lidar have been driven largely by improvements in two key technologies: lasers and detectors. We describe here a lidar instrument for atmospheric remote sensing using the elastic-backscatter and differential-absorption lidar (DIAL) techniques. The instrument features an all-solid-state laser source combined with a flexible approach to detection providing portability, eye-safe operation and high sensitivity. The system is built around a custom-designed Newtonian telescope with a 0.38 m diameter primary mirror. Laser sources and detectors attach directly to the side of the telescope allowing for flexible customization with a range of equipment. The laser source is based on an optical parametric oscillator (OPO). The OPO is pumped by a neodymium-based diode-laser pumped solid-state laser and angle-tuned by rotating the nonlinear conversion crystal. This provides a wide range of available wavelengths suitable for lidar within the 1.55 μm to 3.10 μm spectral region, where there exists a relatively high exposure limit for eye safety. The OPO delivers 1 mJ output pulse energy which is expanded and then transmitted coaxially from the telescope. Our goal is to make vertically-resolved measurements of greenhouse gas concentrations using DIAL. The source can rapidly be tuned between the on-line and off-line wavelengths to make a DIAL measurement. The use of the 1.6 μm wavelength region allows for several detection schemes. Whilst photodiode detectors are a very low-cost solution their limited sensitivity restricts the maximum range over which a signal can be detected. We therefore have designed the instrument to support alternative detection schemes including avalanche photodiodes (APDs).
机译:LIDAR的发展在很大程度上被两个关键技术的改进驱动:激光和探测器。我们在此描述了一种用于大气遥感的激光乐仪,使用弹性反向散射和差动吸收利达(拨号)技术。该仪器具有全固态激光源的良好方法,可提供可移植性,远安全操作和高灵敏度的检测。该系统围绕着一种定制的纽托尼亚望远镜,直径为0.38米的主镜。激光源和探测器直接连接到望远镜的侧面,允许使用一系列设备进行灵活的定制。激光源基于光学参数振荡器(OPO)。通过旋转非线性转换晶体,通过基于钕二极管激光泵浦固态激光和角度调谐泵浦OPO。这提供了适用于1.55μm至3.10μm的激光雷达范围内的宽范围的可用波长,其中眼睛安全的相对高的曝光极限。 OPO提供1 MJ输出脉冲能量,该脉冲能量膨胀,然后从望远镜同轴传递。我们的目标是使用拨号进行温室气体浓度的垂直解决测量。源可以快速调整在线和离线波长之间以进行拨号测量。 1.6μm波长区域的使用允许几种检测方案。虽然光电二极管探测器是非常低成本的解决方案,但它们有限的灵敏度限制了可以检测信号的最大范围。因此,我们设计了仪器以支持包括雪崩光电二极管(APDS)的替代检测方案。

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