Qi Lijian. VIBRATIONAL SPECTRUM FEATURES AND COLOURING MECHANISM OF THE DIFFUSED TOPAZ[J]. Journal of Gems & Gemmology, 2000, 2(1): 1-6.
Citation: Qi Lijian. VIBRATIONAL SPECTRUM FEATURES AND COLOURING MECHANISM OF THE DIFFUSED TOPAZ[J]. Journal of Gems & Gemmology, 2000, 2(1): 1-6.

VIBRATIONAL SPECTRUM FEATURES AND COLOURING MECHANISM OF THE DIFFUSED TOPAZ

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  • Received Date: January 24, 2000
  • A variety of the diffused topaz is discovered in gem markets recently. This kind of stone is characterized by the absence of the colour in the internal and the concentration of blue green colour and brown yellow green colour speckled appearance on the surface (thickness less than 5μm). The reasearch indicates that the diffused topaz is coloured mainly by the permeance of Co 2+, and the crisscross pile silice texture associated with crystal defects is developed commonly in the permeable colour layer. The absorption within the visible light zone of 597, 632, 461nm is resulted from the transition of. 4T1g (4F) → 4T1g (4P)、 4T1g4A2g4T1g2T1g in Co2+. It has been verified that the temperature of diffusion and crystal defects on the surface and concentration gradient of Co2+ are the main causes for the colouration of the diffused topaz. It can be concluded that the LRM is an important tool for identifying the diffused topaz.
  • [1]
    高岩, 李景芝, 张蓓莉.表面扩散处理星光蓝宝石的研究.中国宝石.1996, 4:3 2-3 4
    [2]
    亓利剑, 吴照明.表面具烧结特征的深扩散处理红宝石.中国宝石.1997, 2:97-99
    [3]
    Beny I M, Pirion B. Vibrational spectra of single-crystal topaz.Physics and Chemistry of Minerals.1987, 15:148-15 4
    [4]
    徐培苍, 李如壁.地学中的拉曼光谱.陕西:科学技术出版社, 1999.30-82
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