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首页> 外文期刊>Applied Spectroscopy: Society for Applied Spectroscopy >Monte Carlo Simulations of Subsurface Analysis of Painted Layers in Micro-Scale Spatially Offset Raman Spectroscopy
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Monte Carlo Simulations of Subsurface Analysis of Painted Layers in Micro-Scale Spatially Offset Raman Spectroscopy

机译:微型空间偏移拉曼光谱学中涂层表面分析的蒙特卡洛模拟

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A recently developed micrometer-scale spatially offset Raman spectroscopy (micro-SORS) method provides a new analytical capability for investigating nondestructively the chemical composition of subsurface, micrometer-scale-thick, diffusely scattering layers at depths beyond the reach of conventional confocal Raman microscopy. Here we provide, for the first time, the theoretical foundations for the micro-SORS defocusing concept based on Monte Carlo simulations. Specifically, we investigate a defocusing variant of micro-SORS that we used in our recent proof-of-concept study in conditions involving thin, diffusely scattering layers on top of an extended, diffusely scattering substrate. This configuration is pertinent, for example, for the subsurface analysis of painted layers in cultural heritage studies. The depth of the origin of Raman signal and the relative micro-SORS enhancement of the sublayer signals reached are studied as a function of layer thickness, sample photon transport length, and absorption. The model predicts that sublayer enhancement initially rapidly increases with increasing defocusing, ultimately reaching a plateau. The magnitude of the enhancement was found to be larger for thicker layers. The simulations also indicate that the penetration depths of micro-SORS can be between one and two orders of magnitude larger than those reached using conventional confocal Raman microscopy. The model provides a deeper insight into the underlying Raman photon migration mechanisms permitting the more effective optimization of experimental conditions for specific sample parameters.
机译:最近开发的微米级空间偏移拉曼光谱法(micro-SORS)提供了一种新的分析能力,可以无损地研究在传统共焦拉曼显微镜所不能及的深度的地下,微米级厚度,漫散射层的化学成分。在这里,我们首次提供了基于蒙特卡洛模拟的微型SORS散焦概念的理论基础。具体来说,我们调查了micro-SORS的散焦变体,我们在最近的概念验证研究中使用了这种散焦变体,该条件涉及在扩展的散布散布基板上的薄散布散布层。例如,此配置与文化遗产研究中涂漆层的地下分析有关。拉曼信号的起源深度和到达的子层信号的相对微SORS增强都作为层厚度,样品光子传输长度和吸收的函数进行研究。该模型预测,子层增强最初会随着散焦的增加而迅速增加,最终达到平稳状态。发现增强的幅度对于较厚的层更大。仿真还表明,与传统的共聚焦拉曼显微镜相比,micro-SORS的穿透深度可以大一到两个数量级。该模型提供了对潜在拉曼光子迁移机制的更深入了解,从而可以更有效地优化特定样品参数的实验条件。

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