论文标题

相关红外光学相干断层扫描和高光谱化学成像

Correlative infrared optical coherence tomography and hyperspectral chemical imaging

论文作者

Zorin, Ivan, Su, Rong, Heise, Bettina, Lendl, Bernhard, Brandstetter, Markus

论文摘要

光学相干断层扫描(OCT)是一种高分辨率的三维成像技术,可实现表面和地下微观结构的非破坏性测量。 OCT在中红外(MIR)范围(约4μm)中运行的最新发展取消了基本的散射局限性,并在以前无法接近的领域中启动了应用材料研究。但是,mir光谱区域对于光谱和高光谱成像也引起了极大的兴趣,这允许对材料进行高度选择性和灵敏的化学研究。在此贡献中,我们引入了OCT系统(双波段,中心波长为2μMM和4μM),结合了miR光谱,该系统被实现为栅格扫描化学成像方式。完全集成且具有成本效益的光学仪器基于单个超脑激光源(从1.1μm到4.4μm的发射光谱)。通过从多层复合陶瓷 - 聚合物标本中获得复杂的多维材料数据,可以通过获得复杂的多维材料数据(包括形态和化学信息)来证明原位相关测量的能力。

Optical coherence tomography (OCT) is a high-resolution three-dimensional imaging technique that enables non-destructive measurements of surface and subsurface microstructures. Recent developments of OCT operating in the mid-infrared (MIR) range (around 4 μm) lifted fundamental scattering limitations and initiated applied material research in formerly inaccessible fields. The MIR spectral region, however, is also of great interest for spectroscopy and hyperspectral imaging, which allow highly selective and sensitive chemical studies of materials. In this contribution, we introduce an OCT system (dual-band, central wavelengths of 2 μm m and 4 μm) combined with MIR spectroscopy that is implemented as a raster scanning chemical imaging modality. The fully-integrated and cost-effective optical instrument is based on a single supercontinuum laser source (emission spectrum spanning from 1.1 μm to 4.4 μm). Capabilities of the in-situ correlative measurements are experimentally demonstrated by obtaining complex multidimensional material data, comprising morphological and chemical information, from a multi-layered composite ceramic-polymer specimen.

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