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White light Fourier spectrometer: Monte-Carlo noise analysis and test measurements

机译:白光傅立叶光谱仪:蒙特卡洛噪声分析和测试测量

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This work reports on investigation of the sensitivity of a Fourier-transform spectrometer to noise sources based on Monte-Carlo simulation of measurement of a single spectrum. Flexibility of this approach permits easily to imitate various noise contaminations of the interferograms and to obtain statistically reliable results for widely varying noise characteristics. More specifically, we evaluate the accuracy of restoration of a single absorption peak for the cases of an additive detection noise and the noise which adds a fluctuating component to the carrier frequency in the source and the measurement channel of the interferometer. Comparison of spectra of an etalon He-Ne source calculated from more than 200 measured interferograms with the true spectrum supports a hypothesis that the latter fluctuations have characteristics of a coloured noise. Taking into account that the signal-to-noise ratio in the Fourier spectroscopy is constantly increasing, we focus on limitations on the achievable accuracy of spectrum restoration that are set by this type of noise which modifies the shape of the recorded interferograms. We present also results of the test measurements of the spectrum of a laser diode chosen as a test source using a three-channel Fourier spectroscopic system based on a whitesourced Michelson interferometer realized with the Twyman-Green scheme. The obtained results exhibit that fluctuations in the current displacement of the movable mirror of the interferometer should remain below 20 nm to restore the absorption spectrum with acceptable accuracy, especially at higher frequency bandwidth of the fluctuations.
机译:这项工作基于傅立叶变换光谱仪对单个光谱测量的蒙特卡罗模拟,研究了傅里叶变换光谱仪对噪声源的敏感性。这种方法的灵活性使得可以轻松地模拟干涉图的各种噪声污染,并获得针对各种噪声特性的统计上可靠的结果。更具体地,对于附加检测噪声和在干涉仪的源和测量通道中的载波频率上增加了波动成分的噪声,我们评估单个吸收峰的恢复精度。由200多个测量的干涉图计算出的标准具氦氖光源的光谱与真实光谱的比较,支持了这样一种假设,即后者的波动具有彩色噪声的特征。考虑到傅立叶光谱中的信噪比不断增加,我们集中于限制这种频谱设置的干涉来限制可恢复的频谱恢复精度,这种噪声会改变所记录的干涉图的形状。我们还介绍了一种激光二极管的光谱测试结果,该激光二极管被选为测试光源,使用的三通道傅立叶光谱系统基于通过Twyman-Green方案实现的白源迈克尔逊干涉仪。所获得的结果表明,干涉仪的可移动镜的电流位移的波动应保持在20 nm以下,以便以可接受的精度恢复吸收光谱,尤其是在波动的较高频率带宽下。

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