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Optical properties change in Sb_(40)S_(40)Se_(20) thin films by light-induced effect

机译:Sb_(40)S_(40)Se_(20)薄膜的光学性质通过光诱导效应而改变

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摘要

Thin films of Sb_(40)Se_(20)S_(40) with thickness 1000nm were prepared by thermal evaporation technique. The amorphous nature of the thin films was verified by X-ray diffractometer. The chemical composition of the deposited thin films was examined by energy dispersive X-ray analysis (EDAX). The changes in optical properties due to the influence of laser radiation on amorphous thin films of Sb_(40)Se_(20)S_(40) glassy alloy were calculated from absorbance spectra as a function of photon energy in the wavelength region 450-900 nm. Analysis of the optical absorption data shows that the rule of non-direct transitions predominates. It has been observed that laser-irradiation of the films leads to a decrease in optical band gap while increase in absorption coefficient. The decrease in the optical band gap is explained on the basis of change in nature of films due to disorderness. The optical changes are supported by X-ray photoelectron spectroscopy and Raman spectroscopy.
机译:采用热蒸发技术制备了厚度为1000nm的Sb_(40)Se_(20)S_(40)薄膜。通过X射线衍射仪证实了薄膜的非晶态性质。通过能量色散X射线分析(EDAX)检查沉积的薄膜的化学组成。根据吸收光谱作为光子能量在450-900 nm波长范围内的函数,计算了由于激光辐射对Sb_(40)Se_(20)S_(40)玻璃态非晶态薄膜的影响而引起的光学性能变化。 。对光吸收数据的分析表明,非直接跃迁的规则占主导。已经观察到,膜的激光辐照导致光学带隙减小,而吸收系数增大。光学带隙的减小是基于由于无序性引起的膜性质的变化来解释的。光学变化由X射线光电子能谱和拉曼光谱支持。

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