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Reflectance Spectroscopy Characteristics of Turquoise

机译:绿松石的反射光谱特性

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In this study, we determined the reflectance spectra of four types of turquoise with different hardness (porcelain, hard turquoise, soft turquoise, and loose turquoise) using an ASD TM TerraSpec spectrometer (spectral range 350?¢????2500 nm, Visible-Near Infrared, and Short-wave Infrared). Several absorption features, including six narrow absorption peaks at 425 nm, 1480 nm, 2160 nm, 2218 nm, 2253 nm, and 2347 nm, and three wide peaks between 625?¢????756 nm, 756?¢????915 nm, and 1885?¢????2133 nm have been identified. The strength of the absorption of turquoise increased with decreasing hardness. The absorption peaks at 2160 nm, 2218 nm, 2253 nm, 2347 nm, and 1885?¢????2133 nm on some turquoise spectra (porcelain spectra, for example) were relatively weak, while those at 425 nm, 1480 nm, 625?¢????756 nm, and 756?¢????915 nm were always observed on all turquoise spectra, which could be the diagnostic absorption features for turquoise. Additionally, the hyper-spectral imaging (spectral range 1000?¢????2500 nm, Short-wave Infrared) of the four types of turquoise were obtained using a HySpex TM imager. The Spectral Angle Mapper (SAM) method was successfully used to recognize turquoises, suggesting that hyper-spectral imaging may serve as a useful tool for fast turquoise identification and separation, especially for massive turquoise samples.
机译:在这项研究中,我们使用ASD TM TerraSpec光谱仪(光谱范围为350 nm至2500 nm,可见)确定了四种硬度不同的绿松石(瓷,硬绿松石,软绿松石和松散绿松石)的反射光谱。 -近红外和短波红外)。几个吸收特征,包括在425 nm,1480 nm,2160 nm,2218 nm,2253 nm和2347 nm处的六个窄吸收峰,以及在625nm,756nm,756nm和756nm之间的三个宽峰。鉴定出λ915nm和1885λ2133nm。绿松石的吸收强度随着硬度的降低而增加。在某些绿松石光谱(例如瓷器光谱)上,在2160 nm,2218 nm,2253 nm,2347 nm和1885 ??????? 2133 nm处的吸收峰相对较弱,而在425 nm,1480 nm处的吸收峰相对较弱。在所有绿松石光谱中始终观察到625 nm 756 nm和756 nm 915 nm,这可能是绿松石的诊断吸收特征。另外,使用HySpex TM成像器获得了四种类型的绿松石的高光谱成像(光谱范围1000〜2500 nm,短波红外)。光谱角度映射器(SAM)方法已成功用于识别绿松石,这表明高光谱成像可作为快速识别和分离绿松石的有用工具,特别是对于大量的绿松石样品。

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