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Optical spectroscopy and high pressure on emeralds: synthetic and natural

机译:光谱学和祖母绿上的高压:合成的和天然的

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Emerald, natural and synthetic, are the subject of study by means of optical spectroscopy techniques. Particularly, natural emeralds have been considered as a gemstone in jewelry not being so the synthetic ones. But, in general, the properties of these are very good for applications, for instance as a laser system, due to the impurities control. In this work a comparison between the optical properties of natural and synthetic emeralds is done. Chromium ions are the main responsible for the characteristic fascinating green color of these gemstones, entering in the crystals in octahedral sites. Absorption at room temperature shows up two broad bands in the visible region and two narrow bands called the R-lines. That spectrum corresponds to trivalent chromium ions in an octahedral site, as it happens in ruby and alexandrite. On other hand, photoemission for these materials arises in the range 640-850 nm. at room temperature. In this work it is shown that the luminescence spectra presents important changes for both type of samples as a function of the temperature and pressure; being the crystal field intensity higher for synthetic emeralds with the corresponding blue shift in the spectrum. The effect of a high pressure, applied on small samples of emerald, on the main luminescence peak shows a linear behavior.
机译:天然和合成的祖母绿是通过光谱技术研究的主题。特别地,天然祖母绿被认为是珠宝中的宝石,而不是人工合成的宝石。但是,由于杂质的控制,通常这些材料的性能非常适合应用,例如作为激光系统。在这项工作中,对天然和合成祖母绿的光学特性进行了比较。铬离子是导致这些宝石具有特征性,令人着迷的绿色的主要原因,并进入八面体位置的晶体中。在室温下的吸收在可见光区域显示出两个宽带,并在两个窄带中称为R线。该光谱对应于八面体部位的三价铬离子,就像它发生在红宝石和变石中一样。另一方面,这些材料的光发射发生在640-850 nm范围内。在室温下。这项工作表明,两种类型的样品的发光光谱都随温度和压力的变化而发生重要变化。是合成祖母绿的晶体场强较高,在光谱中具有相应的蓝移。施加在少量祖母绿样品上的高压对主要发光峰的影响表现出线性行为。

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