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Some new trends in the ionoluminescence of minerals

机译:矿物离子发光的一些新趋势

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Ionoluminescence (IL) has mainly been used to detect impurities or defects inside synthetic materials. This paper gives a summary of new applications of IL to natural minerals that might be found in ancient pieces of jewellery or decorative artefacts (affreschi, stucchi, mosaics). Some relevant examples of its use for archaeometrical purposes are given to highlight the potential of the technique. Chemical information can be obtained by luminescent characterization of minerals. IL spectra act as digital imprint for elements or defects inside each material, enabling differentiation of natural specimens from imitations and/or synthetic analogues. Crystal field theory indicates it is the coordination number of the emitter inside the crystalline structure that gives information on its valence. Historical confusion between rubies and red spinel can easily be resolved by analysis of IL spectra. Modern synthetic diamonds can also be discriminated and blue sapphire can be distinguished from blue kyanite, a silicate that is currently being sold as its imitation. The technique can also differentiate between the synthetic and the natural gems. Polymorphs can be identified, and it is possible to recognize minerals from isomorphic series (from the same chemical group with the same structure) even when they share the same light emitter (e.g. Mn2+, in carbonates). High-quality glasses (e.g. laser glasses) which are normally used for faking gemstones can be also detected. We fully believe IL will, in the future, be a powerful technique for determining the crystallinity of solids. This paper gives an overview of possible applications of IL to archaeometry for mineral characterization; this is a new application that still requires further study.
机译:离子发光(IL)主要用于检测合成材料中的杂质或缺陷。本文总结了IL在天然珠宝中的新应用的摘要,这些天然矿物可能在古代珠宝或装饰性人工制品(阿夫斯基,灰泥,马赛克)中发现。给出了一些用于考古学目的的相关示例,以突出该技术的潜力。化学信息可通过矿物的发光特征获得。 IL光谱可作为每种材料中元素或缺陷的数字烙印,从而使天然样品与仿品和/或合成类似物区分开来。晶体场论表明,晶体结构内部的发射极配位数给出了其化合价信息。红宝石和红色尖晶石之间的历史混淆可以通过IL光谱分析轻松解决。也可以区分现代合成钻石,并且可以将蓝宝石与蓝蓝晶石区别开来,蓝蓝晶石是一种硅酸盐,目前正在作为仿制品出售。该技术还可以区分人造宝石和天然宝石。可以识别多晶型物,并且即使它们共享相同的发光体(例如碳酸盐中的Mn2 + ),也可以识别同构系列的矿物(来自具有相同结构的相同化学基团)。还可以检测出通常用于伪造宝石的高品质玻璃(例如激光眼镜)。我们完全相信,IL将在将来成为确定固体结晶度的强大技术。本文概述了IL在考古学中用于矿物表征的可能应用。这是一个仍需要进一步研究的新应用程序。

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