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Photoluminescence and optical transmission of diamond and its imitators

机译:金刚石及其模拟物的光致发光和光透射

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Photoluminescence and optical transmission spectra of several samples of natural and synthetic diamond and its imitators - fianite and corundum - are investigated. The band-A of luminescence at 440 nm, the vibronic N3 system of luminescence and absorption at 415.2 nm, the fundamental absorption edge at 225 nm, and the secondary absorption below 308 nm are the main identifying markers of natural diamonds. For synthetic diamonds, however, such identifying markers are the exciton luminescence at 235 nm, the band-A, and the fundamental absorption edge. Fianites can be identified by the structureless wide band at 500 nm and the wide transmission band in the entire visible range. Colored corundum samples with chrome impurities emit the narrow line at 693 nm and show the absorption band in the 500-600 nm spectral range. A new method for diamond express identification is developed on the basis of measurement of photoluminescence and optical transmission spectra of the samples. It is shown that a diamond tester can be designed combining a spectrometer and a KrCl-excilamp radiating at 222 nm.
机译:研究了几种天然和合成钻石及其模拟物(铁矾和刚玉)样品的光致发光和光透射光谱。 440 nm的发光带A,415.2 nm的发光和吸收的振动N3系统,225 nm的基本吸收边和308 nm以下的二次吸收是天然钻石的主要识别标记。但是,对于合成钻石,此类识别标记是235 nm的激子发光,A带和基本吸收边。纤铁矿可以通过500 nm的无结构宽带和整个可见光范围内的宽透射带来识别。带有铬杂质的有色刚玉样品在693 nm处发射细线,并在500-600 nm光谱范围内显示吸收带。在测量样品的光致发光和光透射光谱的基础上,开发了一种新的钻石快速识别方法。结果表明,可以将分光计和在222 nm处辐射的KrCl-excilamp结合起来设计钻石测试仪。

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