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Comparison of atmospheric laser propagation between the NIR and MWIR

机译:NIR和MWIR之间大气激光传播的比较

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We report results from field experiments that have compared laser propagation in the near infrared (NIR) and mid-wave infrared (MWIR) in a variety of atmospheric conditions. Single frequency laser sources at 1.565 μm and 3.603 μm were transmitted through a single common aperture telescope to ensure that each beam was affected by nearly identical turbulence. Tests were performed on a one-way, 1.26 km path over land and on a round-trip, 2 × 1.41 km path that was mostly over water using a broadband retro-reflector. It is expected from theory that scattering and turbulence should have relatively less effect at longer wavelength, however quantitative measurements in real world conditions are important because of the complexity and simplifying assumptions required in the theory. Although communication and laser radar systems that operate in the NIR at ~1.5 μm benefit from well-developed sources and detectors, it is expected that propagation in the MWIR can offer a significant advantage. The objective of this work was to quantify the relative propagation effects under realistic conditions.
机译:我们报告的野外实验结果比较了在各种大气条件下近红外(NIR)和中波红外(MWIR)中的激光传播。 1.565μm和3.603μm的单频激光源通过单个公共孔径望远镜传输,以确保每个光束都受到几乎相同的湍流影响。测试是在地面上的1.26 km单向路径和2×1.41 km的往返路径上进行的,该路径主要是使用宽带后向反射镜在水上进行的。从理论上可以预期,散射和湍流在较长波长下的影响相对较小,但是由于理论上的复杂性和简化的假设,因此在现实世界中进行定量测量非常重要。尽管在近红外〜1.5μm范围内工作的通信和激光雷达系统受益于发达的信号源和探测器,但可以预期MWIR的传播将提供显着的优势。这项工作的目的是量化现实条件下的相对传播效应。

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