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Method for the Estimation of the Mean Lorentzian Bandwidth in Spectra Composed of an Unknown Number of Highly Overlapped Bands

机译:未知数量的高度重叠频带组成的频谱中平均洛伦兹带宽的估计方法

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摘要

We introduce a method for the estimation of the mean Lorentzian bandwidth of the component bands in a spectrum. The method is computationally simple, using only the module of the Fourier transform of the spectrum, and its first derivative. Moreover, the presented method does not require knowledge of the number of bands in the spectrum, their band positions, or their band areas. Furthermore, it works on spectra containing Lorentzian bands, as well as Gaussian and Voigtian bands. Therefore, the introduced method seems especially well suited for obtaining a representative Lorentzian width for highly overlapped bands, independent of their number and Lorentzian/Gaussian character. We describe how different experimental limitations (spectral truncation, offset error, presence of noise, etc.) may affect the performance of the method, and when required we propose effective alternatives to minimize their effects. Finally, we show the application of the method to an experimental spectrum: the amide I band of a dry film of the solubilized ADP/ATP carrier. The estimation of the mean Lorentzian width can allow, for instance, for a more objective selection of the deconvolution width in Fourier self-deconvolution, allowing for a more objective and reliable analysis of the amide I band of proteins. The mean Lorentzian width can also be useful to obtain an estimation of the homogenous broadening and vibrational relaxation of the amide I vibration of proteins, without requiring complex pump-probe experiments.
机译:我们介绍了一种估计频谱中各个分量带的平均洛伦兹带宽的方法。该方法计算简单,仅使用频谱的傅立叶变换模块及其一阶导数即可。此外,所提出的方法不需要了解频谱中的频带数量,其频带位置或频带区域。此外,它还可以处理包含洛伦兹谱带,高斯谱带和Voigtian谱带的光谱。因此,引入的方法似乎特别适合于获得高度重叠的带的代表性洛伦兹宽度,而与它们的数量和洛伦兹/高斯特性无关。我们描述了不同的实验限制(光谱截断,偏移误差,噪声的存在等)如何影响该方法的性能,并在需要时提出了有效的替代方法以最小化其影响。最后,我们展示了该方法在实验光谱中的应用:溶解的ADP / ATP载体干膜的酰胺I带。平均洛伦兹宽度的估计可以例如允许在傅立叶自反卷积中更客观地选择反卷积宽度,从而允许对蛋白质的酰胺I带进行更客观和可靠的分析。平均洛伦兹宽度也可用于获得蛋白质酰胺I振动的均匀加宽和振动弛豫的估计,而无需复杂的泵浦探针实验。

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    《Applied Spectroscopy》 |2008年第6期|689-700|共12页
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