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首页> 外文期刊>Laser physics letters >Detection of the OH band fine structure in liquid water by means of new treatment procedure based on the statistics of the fractional moments
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Detection of the OH band fine structure in liquid water by means of new treatment procedure based on the statistics of the fractional moments

机译:基于分数矩统计的新处理程序检测液态水中的OH带细结构

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摘要

Three main spectral components ~3210, 3450, and 3650 cm{sup}(-1) separated by deep gaps in the Raman OH band of liquid water have been detected by a new treatment procedure of experimental data. The applied treatment is based on the statistics of the fractional moments. This approach includes the consideration of the total set of the moments (the fractional and even complex ones) and the generalized mean value functions (GMV) as a specific noise "label". The possibility of the extraction and quantitative description of the fine structure of the averaging experimental spectra is demonstrated. In the frame of the novel approach the reliable separation between Raman spectra of the distilled and Milli-Q water is obtained.
机译:通过一种新的实验数据处理方法,检测到三个主要的光谱成分〜3210、3450和3650 cm {sup}(-1),它们被液态水的拉曼OH带中的深间隙隔开。所应用的处理基于分数矩的统计信息。该方法包括考虑总的矩集(分数矩,甚至是复数矩)以及作为特定噪声“标签”的广义均值函数(GMV)。证明了提取和定量描述平均实验光谱精细结构的可能性。在新方法的框架中,可以可靠地分离蒸馏水和Milli-Q水的拉曼光谱。

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