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Optical properties of Ge-Se-Te wedge-shaped films by using only transmission spectra

机译:仅使用透射光谱的Ge-Se-Te楔形薄膜的光学性质

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摘要

Amorphous Ge10Se90-xTex (with x = 0, 5, 10 and 15 at.%) thin films were prepared by thermal evaporation method. The optical transmission spectra of these films were measured in the wavelength range of 500-2500 nm in order to drive the refractive index and the absorption coefficient of these films. Applying the analytical expressions proposed by Swanepoel, enabling the calculations of optical constants of thin films with non-uniform thickness with high accuracy. Furthermore, the dispersion of the refractive index is discussed in terms of the single-oscillator Wemple and DiDomenico model. It was found that, the mechanism of the optical absorption follows the rule of the allowed non-direct transition. The optical band gab, E-g, and the oscillator energy, E-o, decrease while the dispersion energy, E-d, increases by increasing Te content. The relationship between the obtained results and the chemical compositions of the Ge10Se90-xTex thin films were discussed in terms of the chemical bond approach, the excess of Se-Se homopolar bonds and the cohesive energy (CE).
机译:通过热蒸发法制备非晶Ge10Se90-xTex(x = 0、5、10和15 at。%)薄膜。为了驱动这些膜的折射率和吸收系数,在500-2500nm的波长范围内测量了这些膜的光学透射光谱。应用Swanepoel提出的解析表达式,可以高精度地计算出厚度不均匀的薄膜的光学常数。此外,根据单振荡器Wemple和DiDomenico模型讨论了折射率的色散。已经发现,光吸收的机理遵循允许的非直接跃迁的规则。随着Te含量的增加,光学带隙E-g和振荡器能量E-o减小,而色散能量E-d增大。从化学键法,过量的Se-Se同极性键和内聚能(CE)的角度讨论了Ge10Se90-xTex薄膜的结果与化学成分之间的关​​系。

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