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Spectral feature variations in X-ray diffraction imaging systems

机译:X射线衍射成像系统中的光谱特征变化

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Materials with different atomic or molecular structures give rise to unique scatter spectra when measured by X-ray diffraction. The details of these spectra, though, can vary based on both intrinsic (e.g., degree of crystallinity or doping) and extrinsic (e.g., pressure or temperature) conditions. While this sensitivity is useful for detailed characterizations of the material properties, these dependences make it difficult to perform more general classification tasks, such as explosives threat detection in aviation security. A number of challenges, therefore, currently exist for reliable substance detection including the similarity in spectral features among some categories of materials combined with spectral feature variations from materials processing and environmental factors. These factors complicate the creation of a material dictionary and the implementation of conventional classification and detection algorithms. Herein, we report on two prominent factors that lead to variations in spectral features: crystalline texture and temperature variations. Spectral features associated with crystalline texture will be described for solid metallic sheet, polymer sheet, and metallic, organic, and inorganic powder specimens. While liquids are largely immune to texture effects, they are susceptible to temperature changes that can modify their density or produce phase changes. We will describe in situ temperature-dependent measurement of aqueous-based commercial goods in the temperature range of -20℃ to 35℃.
机译:当通过X射线衍射测量时,具有不同原子或分子结构的材料会产生独特的散射光谱。但是,这些光谱的细节可以基于固有(例如,结晶度或掺杂程度)和非固有(例如,压力或温度)条件而变化。尽管这种敏感性对于材料特性的详细表征很有用,但这些依赖性使执行更通用的分类任务(例如航空安全中的爆炸物威胁检测)变得困难。因此,对于可靠的物质检测,目前存在许多挑战,包括某些类别材料之间光谱特征的相似性以及材料加工和环境因素引起的光谱特征变化。这些因素使材料字典的创建以及常规分类和检测算法的实现变得复杂。本文中,我们报告了导致光谱特征变化的两个重要因素:晶体织构和温度变化。将描述固体金属片,聚合物片以及金属,有机和无机粉末样品的与晶体织构有关的光谱特征。尽管液体在很大程度上不受质地影响,但它们容易受到温度变化的影响,温度变化会改变其密度或产生相变。我们将描述在-20℃至35℃的温度范围内水基商品的原位温度依赖性测量。

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