Raman Scattering Applied to Materials Science

Andrés Cantarero
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引用次数: 37

Abstract

One of the most powerful techniques to extract physical and chemical information of a material is the light scattering. Opposite to x-ray scattering for instance, where an average of the sample properties is obtained, Raman scattering is a local probe which can be used to detect inhomogeneities, local strain, lack of crystallinity, anharmonicities or information on the electronic structure by means of resonant Raman scattering. In this work, we will analyze the main contributions of Raman scattering in Materials Sciences. After a brief introduction of the technique and the equipment needed for the physical measurements, we will give practical examples of Raman scattering measurements applied to a number of materials and the valuable information obtained in every example.

拉曼散射在材料科学中的应用
光散射是提取材料物理和化学信息最有效的技术之一。例如,与x射线散射相反,在x射线散射中获得样品性质的平均值,拉曼散射是一种局部探针,可用于通过共振拉曼散射来检测不均匀性,局部应变,缺乏结晶度,不和谐性或电子结构信息。在这项工作中,我们将分析拉曼散射在材料科学中的主要贡献。在简要介绍了物理测量所需的技术和设备之后,我们将给出应用于许多材料的拉曼散射测量的实际示例以及在每个示例中获得的有价值的信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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