Institute of Physics, Nicolaus Copernicus University, Grudziądzka 5, 87-100 Torun, Poland.
Appl Spectrosc. 2013 Aug;67(8):960-72. doi: 10.1366/12-06703.
A detailed feasibility study on the combined use of laser-induced breakdown spectroscopy with optical coherence tomography (LIBS/OCT), aiming at a realistic depth-resolved elemental analysis of multilayer stratigraphies in paintings, is presented. Merging a high spectral resolution LIBS system with a high spatial resolution spectral OCT instrument significantly enhances the quality and accuracy of stratigraphic analysis. First, OCT mapping is employed prior to LIBS analysis in order to assist the selection of specific areas of interest on the painting surface to be examined in detail. Then, intertwined with LIBS, the OCT instrument is used as a precise profilometer for the online determination of the depth of the ablation crater formed by individual laser pulses during LIBS depth-profile analysis. This approach is novel and enables (i) the precise in-depth scaling of elemental concentration profiles, and (ii) the recognition of layer boundaries by estimating the corresponding differences in material ablation rate. Additionally, the latter is supported, within the transparency of the object, by analysis of the OCT cross-sectional views. The potential of this method is illustrated by presenting results on the detailed analysis of the structure of an historic painting on canvas performed to aid planned restoration of the artwork.
本文提出了一种将激光诱导击穿光谱与光相干断层扫描(LIBS/OCT)相结合的详细可行性研究,旨在对绘画中的多层地层进行现实的深度分辨元素分析。将高光谱分辨率的 LIBS 系统与高空间分辨率光谱 OCT 仪器融合,可以显著提高地层分析的质量和准确性。首先,在进行 LIBS 分析之前,利用 OCT 映射来辅助选择绘画表面上要详细检查的特定感兴趣区域。然后,将 OCT 仪器与 LIBS 交织使用,作为在线确定 LIBS 深度剖面分析中单个激光脉冲形成的烧蚀坑深度的精确轮廓仪。这种方法是新颖的,能够实现(i)元素浓度剖面的精确深度定标,以及(ii)通过估计材料烧蚀率的相应差异来识别层边界。此外,后者通过分析 OCT 横截面视图在物体的透明度内得到支持。通过对画布上的一幅历史画结构进行详细分析的结果来说明该方法的潜力,这些结果旨在辅助艺术品的计划修复。