Full-Field Transmission X-ray Microspectroscopy (FF-XANES) Applied to Cultural Heritage Materials: The Case of Ancient Ceramics

P. Sciau, Tian-xu Wang
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引用次数: 6

Abstract

Synchrotrons provide more and more significant analytical techniques to investigate ancient materials from cultural heritages. New ways to visualize the complex structure of these materials are developed on the basis of elemental, density, and refraction contrasts. The tunability of synchrotron beams owing to the high flux and high spectral resolution of photon sources is at the origin of the main chemical speciation capabilities of synchrotron-based techniques. Among them the full-field X-ray absorption near-edge structure (XANES) imaging technique using hard X-rays is particularly efficient. It allows investigating a significant volume of material with a very good spatial resolution, which is invaluable for ancient material because of their heterogeneity and complexity. After presenting the technique and its variants, we will show its ability to study cultural heritage materials through a few examples.
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全场透射x射线微光谱学(FF-XANES)在文物材料中的应用:以古代陶瓷为例
同步加速器为研究文化遗产中的古代材料提供了越来越重要的分析技术。在元素、密度和折射对比的基础上,开发了可视化这些材料复杂结构的新方法。由于光子源的高通量和高光谱分辨率,同步加速器光束的可调性是基于同步加速器技术的主要化学形态形成能力的起源。其中利用硬x射线的全场x射线吸收近边结构(XANES)成像技术尤为高效。它允许以非常好的空间分辨率调查大量的材料,这对于古代材料来说是非常宝贵的,因为它们的异质性和复杂性。在介绍了该技术及其变体之后,我们将通过几个例子展示其研究文化遗产材料的能力。
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Introductory Chapter: Synchrotron Radiation-Basics and Concepts Applications of Synchrotron-Source IR Spectroscopy for the Investigation of Insect Wings Full-Field Transmission X-ray Microspectroscopy (FF-XANES) Applied to Cultural Heritage Materials: The Case of Ancient Ceramics Fundamental of Synchrotron Radiations
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