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Tiny Peaks vs Mega Backgrounds: A General Spectroscopic Method with Applications in Resonant Raman Scattering and Atmospheric Absorptions

机译:小峰与巨型背景:一种通用的光谱方法及其在共振拉曼散射和大气吸收中的应用

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摘要

A simple method using standard spectrometers with charge-coupled device (CCD) detectors is described to routinely measure background-corrected spectra in situations where the signal is composed of weak spectral features (such as Raman peaks or absorption lines) engulfed in a much stronger (by as much as ~10~(5)) broad background. The principle of the method is to subtract the dominant fixed-structure noise and obtain a shot-noise limited spectrum. The final noise level can therefore be reduced as desired by sufficient integration time. The method requires multiple shifts of the diffraction gratings to extract the pixel-dependent noise structure, which is then used as a flat-field correction. An original peak-retrieval procedure is proposed, demonstrating accurate determination of peak lineshapes and linewidths and robustness on practical examples where conventional methods would not be applicable. Examples are discussed to illustrate the potential of the technique to perform routine resonant Raman measurements of fluorescent dyes with high quantum yield, using conventional Raman systems. The method can equally be applied to other situations where small features are masked by a broad overwhelming background. An explicit example is given with the measurement of weak absorption lines in atmospheric gases.
机译:描述了一种使用标准光谱仪和电荷耦合器件(CCD)检测器的简单方法,以在信号由弱光谱特征(例如拉曼峰或吸收线)包裹成更强的(约有〜10〜(5)的广泛背景。该方法的原理是减去主要的固定结构噪声并获得散粒噪声限制的频谱。因此,可以通过足够的积分时间来降低最终噪声水平。该方法需要对衍射光栅进行多次移位,以提取与像素有关的噪声结构,然后将其用作平场校正。提出了原始的峰检索程序,该方法在不适用常规方法的实际示例中演示了峰线形和线宽以及稳健性的准确确定。讨论了一些实例,以说明使用常规拉曼系统以高量子产率对荧光染料进行常规共振拉曼测量的技术潜力。该方法同样可以应用于其他小的特征被广阔的压倒性背景所掩盖的情况。在测量大气中的弱吸收线时给出了一个明确的例子。

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