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Standoff Mid-Infrared Emissive Imaging Spectroscopy for Identification and Mapping of Materials in Polychrome Objects

机译:支架中红外发光成像光谱,用于多色对象中材料的识别和映射

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Microscale mid-infrared (mid-IR) imaging spectroscopy is used for the mapping of chemical functional groups. The extension to macroscale imaging requires that either the mid-IR radiation reflected off or that emitted by the object be greater than the radiation from the thermal background. Reflectance spectra can be obtained using an active IR source to increase the amount of radiation reflected off the object, but rapid heating of greater than 4 degrees C can occur, which is a problem for paintings. Rather than using an active source, by placing a highly reflective tube between the painting and camera and introducing a low temperature source, thermal radiation from the room can be reduced, allowing the IR radiation emitted by the painting to dominate. Thus, emissivity spectra of the object can be recovered. Using this technique, mid-IR emissivity image cubes of paintings were collected at high collection rates with a low-noise, line-scanning imaging spectrometer, which allowed pigments and paint binders to be identified and mapped.
机译:微尺度中红外线(MID-IR)成像光谱用于化学官能团的映射。宏观成像的延伸需要将反射的中间IR辐射或由物体发射的辐射大于来自热背景的辐射。可以使用活性IR源获得反射光谱来增加从物体反射的辐射量,但是可能发生大于4摄氏度的快速加热,这是绘画的问题。不是使用在涂装和相机之间的高反射管并引入低温源之间的高反射管并引入低温源,可以减少来自房间的热辐射,从而使涂装发出的IR辐射占据主导地位。因此,可以恢复物体的发射率光谱。使用这种技术,在高收集速率下采用低噪声,线扫描成像光谱仪收集绘画的中外发射率图像立方体,其允许识别和映射颜料和涂料粘合剂。

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