High Contrast Multipass Fabry-Perot Spectrometer

G. Holah, O. Simpson
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Abstract

Although diffraction grating and Fourier Transform spectrometers are widely used in the infrared & far infrared, both techniques posses inherent disadvantages. It is well-known that the radiation throughput of the grating spectrometer is severely reduced as the resolution is increased, it is this lack of radiation energy and the accompanying need for long measurement times which has led to the rapid expansion of the Fourier technique as the basic FIR instrument. However the grating does have a number of advantages, namely it is real-time, resolution over a small spectral interval can be improved by closing the splits without a too prohibitively long scan time, it has high contrast, i.e., its spectral purity when used with good blocking filters is very good. This means that transmissions less than 1% can be measured with a high degree of confidence and small, < 0.5%, changes can easily be seen.
高对比度多通法布里-珀罗光谱仪
虽然衍射光栅和傅立叶变换光谱仪在红外和远红外领域得到了广泛的应用,但这两种技术都有其固有的缺点。众所周知,随着分辨率的提高,光栅光谱仪的辐射通量会严重降低,正是这种辐射能量的缺乏和随之而来的长测量时间的需要,导致了傅里叶技术作为FIR基本仪器的迅速发展。然而,光栅确实有很多优点,即它是实时的,在一个小的光谱间隔内的分辨率可以通过关闭分裂来提高,而不需要太长的扫描时间,它具有高对比度,即,它的光谱纯度与良好的阻塞滤波器一起使用时是非常好的。这意味着可以以高置信度测量小于1%的传输,并且可以很容易地看到小于0.5%的小变化。
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