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The complete optical spectrum of liquid water measured by inelastic x-ray scattering

机译:通过非弹性X射线散射测量的液态水的完整光谱

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摘要

Interaction of light with matter is of paramount importance in nature. The most fundamental property of a material in relation to light is its oscillator strength distribution, i.e., how strongly it absorbs light as a function of wavelength. Once the oscillator strength distribution is determined precisely for a wide enough energy range, the optical constants such as absorbance and reflectance as well as a number of other properties of the material, some of which are seemingly unrelated to photoabsorption, can be deduced. Most important of all is the fact that the interaction of matter with fast charged particles can be described by its complete optical spectra [Inokuti, M. (1986) Photochem. Photobiol. 44, 279–285]. Despite their importance, however, the complete optical spectra of volatile liquids including water have never been obtained accurately because of experimental difficulties inherent in vacuum UV spectroscopy. Inelastic x-ray scattering spectroscopy can provide quantitative data equivalent to those from vacuum UV absorption spectra. Herein, we show the complete optical spectrum of liquid water determined by making use of intense monochromatic x-rays supplied by the wiggler line X21 of the National Synchrotron Light Source.
机译:在自然界中,光与物质的相互作用至关重要。材料相对于光的最基本特性是其振荡器强度分布,即,其吸收光的强度与波长的关系。一旦在足够宽的能量范围内精确确定了振荡器的强度分布,就可以得出光学常数,例如吸收率和反射率,以及该材料的许多其他特性,其中一些似乎与光吸收无关。最重要的是,可以通过其完整的光谱描述物质与快速带电粒子的相互作用[Inokuti,M.(1986)Photochem。感光油。 44,279–285]。然而,尽管它们很重要,但是由于真空紫外光谱法固有的实验困难,从未精确地获得包括水在内的挥发性液体的完整光谱。非弹性X射线散射光谱可以提供与真空UV吸收光谱等效的定量数据。在这里,我们显示了液态水的完整光谱,该光谱是通过利用国家同步加速器光源的摆动线X21提供的强烈单色X射线确定的。

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