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Relevance of an inverse problem approach to overcome cut-off wavenumbers disparities in infrared stationary Fourier transform spectrometers

机译:克服红外固定傅立叶变换光谱仪中的截止波数差异的反问题方法的相关性

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摘要

One of the major limitations to the use of infrared focal plane arrays (IRFPAs) in stationary Fourier transform spectrometers (FTSs) comes from the spatial inhomogeneities of the pixel responses, where the inhomogeneities of the cut-off wavenumbers of the pixels can prevail. The hypothesis commonly assumed for FTSs that all the pixels are equivalent is thus inaccurate and results in a degradation of the estimated spectrum, even far from the cut-off wavenumbers. However, if the individual spectral responses of the pixels are measured beforehand, this a priori information can be used in the inversion process to produce reliable spectra. Thus, spatial inhomogeneities are not an obstacle for the use of infrared stationary FTS. This result is illustrated in this paper by numerical simulations, based on a realistic description of an IRFPA.
机译:在固定傅立叶变换光谱仪(FTS)中使用红外焦平面阵列(IRFPA)的主要限制之一来自像素响应的空间不均匀性,其中像素的截止波数的不均匀性可能普遍存在。对于FTS,通常假设所有像素都相等的假设是不准确的,并且导致估计光谱的劣化,甚至与截止波数相差甚远。但是,如果预先测量像素的各个光谱响应,则该先验信息可用于反演过程中以生成可靠的光谱。因此,空间不均匀性不是使用红外固定式FTS的障碍。本文基于对IRFPA的实际描述,通过数值模拟说明了这一结果。

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