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Three‐Dimensional Raman Tomographic Microspectroscopy: A Novel Imaging Technique

机译:三维拉曼断层扫描显微光谱:一种新颖的成像技术

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Chemical constituents and their spatial distributions in terrestrial and extraterrestrial samples may provide clues to their formation histories and secondary processes they were subjected to. Most analytical tools are either limited in imaging the interior of samples or they are destructive such that the sample is chemically modified. In this work, we have conducted three‐dimensional Raman tomographic imaging experiments on both terrestrial and extraterrestrial samples. The in situ nondestructive analytical technique presented here provides spatial distribution of various chemical constituents from the interior of the samples with high spatial and depth resolution. Raman data were first collected from two‐dimensional layers at the surface and at various depths inside the samples by means of confocal Raman imaging. Individual chemical distribution maps were generated for each layer, which were then stacked to form and visualize the three‐dimensional distributions. In addition to three‐dimensional distributions, Raman spectral information was also collected from each pixel within the measured areas, thus allowing us to also perform detailed spectral investigations of the samples.
机译:陆地和地球外样品中的化学成分及其空间分布可能为它们的形成历史和经历的次级过程提供了线索。大多数分析工具要么限于对样品内部进行成像,要么具有破坏性,以致于对样品进行了化学修饰。在这项工作中,我们对地面和地面样品进行了三维拉曼层析成像实验。本文介绍的原位非破坏性分析技术可从样品内部提供具有高空间和深度分辨率的各种化学成分的空间分布。首先通过共聚焦拉曼成像从样品表面和各个深度的二维层收集拉曼数据。为每一层生成单独的化学分布图,然后将其堆叠以形成和可视化三维分布。除三维分布外,还从测量区域内的每个像素收集了拉曼光谱信息,从而使我们还可以对样品进行详细的光谱研究。

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