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Characterization and modeling of drift noise in Fourier transform spectroscopy: implications for signal processing and detection limits

机译:傅里叶变换光谱中漂移噪声的表征和建模:对信号处理和检测极限的影响

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摘要

A theoretical analysis of long-term drift noise in Fourier transform spectroscopy is presented. Theoretical predictions are confirmed by experiment. Fractional Brownian motion is employed as a stochastic process model for drift noise. A formulation of minimum detectable signal is given that properly accounts for drift noise. The spectral exponent of the low-frequency drift noise is calculated from experimental data. A frequency-dependent optimal spectrum averaging time is found to exist beyond which the minimum detectable signal increases indefinitely. It is also shown that the minimum detectable signal in an absorbance or transmission measurement degrades indefinitely with the time elapsed since background spectrum acquisition. # 1997 Optical Society of America
机译:提出了傅立叶变换光谱中长期漂移噪声的理论分析。理论预测已通过实验证实。分数布朗运动被用作漂移噪声的随机过程模型。给出了最小可检测信号的公式,可以适当考虑漂移噪声。从实验数据计算出低频漂移噪声的频谱指数。发现存在依赖于频率的最佳频谱平均时间,在该时间之外,最小可检测信号将无限期增加。还显示,在吸光度或透射率测量中,可检测到的最小信号随自背景光谱采集以来经过的时间无限期降低。 #1997美国眼镜学会

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