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Comparisons between field-widen Michelson interferometer and Fabry-Perot interferometer as the spectroscopic filter in high spectral resolution lidar

机译:现场迈克森干涉仪和法布林 - 珀罗干涉仪的比较作为高光谱分辨率LIDAR的光谱滤波器

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One of the pivotal challenges in high spectral resolution lidars (HSRLs) is the spectral discrimination process, which brings about more straightforward and accurate retrieval without a priori assumptions in contrast to standard backscatter lidars. Inteferometric filters such as Fabry-Perot interferometer (FPI) has shown great convenience for spectrally separating the Rayleigh and Mie scattered elements in HSRL returned signals. Based on interference of two incident beams, the field -widen Michelson interferometer (FWMI) may be also the same potential in this application as FPI in spite of some performance differences. In this paper, we concentrate on the performance comparisons of FWMI with FPI as spectroscopic filter in HSRL from the inspections of spectral discrimination characteristic, field of view (FOV) tolerance, the efficiency of power collection, etc. All these analytical comparisons are quantificational and will be beneficial to reasonable choice among the two optical filters for HSRL. The results indicate that in spite of a litter lower transmittance when processing the radiation with very small divergence and more rigorous tolerance for temperature stability and surface flatness compared with FPI, FWMI is still very competent in this spectral filtering process for its remarkable spectral discrimination characteristic and efficient photons collective ability which attributes to its field widen design and intrinsically outstanding spectral separation performance.
机译:高光谱分辨率LIIDARS(HSRL)中的一个关键挑战是光谱辨别过程,其在没有先验的假设与标准后散雷达对比的情况下具有更直接和准确的检索。诸如法布里 - 珀罗干涉仪(FPI)的信息滤波器已经为光谱分离HSRL返回信号中的瑞利和MIE散射元件表示提供了极大的便利。基于两个入射光束的干扰,现场-Widen Michelson干涉仪(FWMI)也可以在本申请中作为FPI的潜力以及尽管有一些性能差异。在本文中,我们专注于FWMI与FPI的性能比较,作为HSRL的光谱滤波器,从光谱辨别特性检查,视野(FOV)容差,电力收集效率等。所有这些分析比较都是量化的对于HSR1的两个光学滤波器之间的合理选择将是有益的。结果表明,尽管与FPI相比,在处理具有非常小的发散和更严格的温度稳定性和表面平整度的辐射时凋落性,但与FPI相比,FWMI仍然非常竞争于其显着的光谱辨别特性和其显着的光谱辨别特性高效的光子集体能力,其拓宽其拓宽设计和本质上出优异的光谱分离性能。

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