Fauquet F, Galluzzi F, Taday Philip F, Chapoulie R, Mounier A, Ben Amara A, Mounaix P
Laboratoire IMS-UMR 5218 CNRS, Université Bordeaux, Bat A31, 351 cours de la libération, 33405, Talence, France.
Archéosciences-Bordeaux: Matériaux, Temps, Images et Sociétés-UMR 6034, Domaine Universitaire, 33607, Pessac Cedex, France.
Sci Rep. 2024 Aug 20;14(1):19248. doi: 10.1038/s41598-024-69697-6.
In this paper, we present the potential of Terahertz Time-Domain Imaging (THz-TDI) as a tool to perform non-invasive 3D analysis of an ancient enamel plate manufactured by Longwy Company in France. The THz data collected in the reflection mode were processed using noise filtering procedures and an advanced imaging approach. The results validate the capability to identify glaze layers and the thickness of ceramic materials. To characterize the nature of the pigments, we also use with X-ray images, visible near-infrared hyperspectral imaging spectroscopy, and p-XRF (portable X-ray fluorescence) to qualitatively and quantitively identify the materials used. The obtained information enables a better understanding of the decoration chromogens nature and, thus, to determine the color palette of the artists who produced such decorative object. We also establish the efficiency of a focus, Z-tracker, which enables to perform THz imaging on non-flat samples and to attenuate artifacts obtained with a short focus lens. Then, 3D images are extracted and generated, providing a real vision. We also report the evaluation of the internal damage state through the detection of fractures.
在本文中,我们展示了太赫兹时域成像(THz-TDI)作为一种工具的潜力,用于对法国龙维公司制造的古代珐琅板进行非侵入性三维分析。在反射模式下收集的太赫兹数据使用噪声滤波程序和先进的成像方法进行处理。结果验证了识别釉层和陶瓷材料厚度的能力。为了表征颜料的性质,我们还结合使用X射线图像、可见近红外高光谱成像光谱和便携式X射线荧光光谱(p-XRF)来定性和定量识别所使用的材料。获得的信息有助于更好地理解装饰发色团的性质,从而确定制作此类装饰物品的艺术家所使用的调色板。我们还确定了聚焦Z跟踪器的效率,该跟踪器能够对非平面样品进行太赫兹成像,并减少使用短焦距透镜获得的伪像。然后,提取并生成三维图像,提供真实的视觉效果。我们还报告了通过检测裂缝对内部损伤状态的评估。