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Concentration Dependence of the Optical Properties of Glassy Alloys in the HgS-Ga2S3-GeS2 System

机译:HgS-Ga2S3-GeS2体系中玻璃态合金光学性质的浓度依赖性

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摘要

The concentration dependences of the optical properties of glassy alloys in the HgS-Ga2S3-GeS2 system have been investigated in the spectral range 2.0-2.9 eV. The energy gap E_g of glasses has been estimated, and the dependence of the energy gap on the content of HgS and Ga2S3 has been analyzed. The spectral dependences α(hv) for glasses in the system under investigation in the fundamental absorption range are described by the Urbach rule. The alloys containing ≥ 20 mol % (HgS + Ga2S3) are characterized by an ordering and a decrease in the energy gap E_g, which are explained by the changes in the short-range order in the arrangement of the atoms involved in the composition of alloys. It has been assumed that, at high concentrations of modifiers, there can arise microscopic inclusions, i.e., different defects, which can scatter light and decrease the transparency of glassy alloys.
机译:在2.0-2.9 eV的光谱范围内,研究了HgS-Ga2S3-GeS2系统中玻璃态合金光学性质的浓度依赖性。估计了玻璃的能隙E_g,并且分析了能隙对HgS和Ga2S3含量的依赖性。乌尔巴赫法则描述了在基本吸收范围内被研究系统中玻璃的光谱依赖性α(hv)。含≥20 mol%(HgS + Ga2S3)的合金的特征在于能隙E_g有序和减小,这可以通过合金成分中所涉及的原子排列的短程顺序变化来解释。据推测,在高浓度的改性剂下,会出现微观的夹杂物,即不同的缺陷,它们会散射光并降低玻璃态合金的透明度。

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