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Quantitative imaging through a spectrograph. 1. Principles and theory

机译:通过光谱仪进行定量成像。 1.原理与理论

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摘要

Laser-based optical diagnostics, such as planar laser-induced fluorescence and, especially, Raman imaging, often require selective spectral filtering. We advocate the use of an imaging spectrograph with a broad entrance slit as a spectral filter for two-dimensional imaging. A spectrograph in this mode of operation produces output that is a convolution of the spatial and spectral information that is present in the incident light. We describe an analytical deconvolution procedure, based on Bayesian statistics, that retrieves the spatial information while it avoids excessive noise blowup. The method permits direct imaging through a spectrograph, even under broadband illumination. We introduce the formalism and discuss the underlying assumptions. The performance of the procedure is demonstrated on an artificial but pathological example. In a companion paper [Appl. Opt. 43, 5682-5690 (2004)] the method is applied to the practical case of fuel equivalence ratio Raman imaging in a combustible methane-air mixture. (C) 2004 Optical Society of America.
机译:基于激光的光学诊断,例如平面激光诱导的荧光,尤其是拉曼成像,通常需要选择性光谱过滤。我们提倡使用具有宽入口狭缝的成像光谱仪作为二维成像的光谱滤镜。在这种操作模式下的光谱仪产生的输出是入射光中存在的空间和光谱信息的卷积。我们描述了一种基于贝叶斯统计量的解析反卷积过程,该过程可检索空间信息,同时又避免了过多的噪声爆炸。该方法即使在宽带照明下也可以通过光谱仪直接成像。我们介绍形式主义并讨论基本假设。该程序的执行在一个人工但病理的例子上得到了证明。在随附的论文中[Appl。选择。 43,5682-5690(2004)]将该方法应用于可燃甲烷-空气混合物中燃料当量比拉曼成像的实际情况。 (C)2004年美国眼镜学会。

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