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The detailed calculations of optical properties of indium-doped CdO nanostructured films using Kramers-Kronig relations

机译:利用Kramers-Kronig关系的铟掺杂CDO纳米结构薄膜光学性质的详细计算

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摘要

The different ratios of Indium-doped cadmium oxide thin films were deposited on a glass substrate by a sol-gel assisted spin coating technique. The structure of the films was analyzed using XRD and depicts the amorphous nature of the doped films. All the films are highly transparent, and the value of transparency is around 80 % in the visible region. The optical constants were calculated based on Kramers-Kroning relations. The optical band gap value decreased with doping and is in the range of 2.73 to 2.31 eV. The enhancement in the linear optical properties such as refractive index, absorption index, and dielectric constant was also observed with an increase in the doping concentration. The linear refractive index value increased with doping concentration, and it was in the range of 2.16 to 2.62 indicates that the present sample is useful optical window applications. The nonlinear optical properties such as chi((1)), chi((3)), and n((2)) are varying in the range of 0.005 to 0.468, 3.283 x 10(-142) to 7.746 x 10(-12) esu, and 7.986 x 10(-13) to 1.119 x 10(-10) esu, respectively. The enhancement in the optical properties with increasing doping concentration suggests the present films are useful for various optical device applications. The maximum dielectric constants are varying from 4.54 to 6.42, which indicates that the present samples are suitable for optoelectronic devices. Furthermore, nonlinear optical properties were analyzed and reported.
机译:采用溶胶-凝胶辅助旋涂技术在玻璃衬底上沉积了不同比例的掺铟氧化镉薄膜。利用XRD分析了薄膜的结构,并描述了掺杂薄膜的非晶态性质。所有的薄膜都是高度透明的,在可见光区域的透明度约为80%。根据Kramers-Kroning关系计算了光学常数。光学带隙值随掺杂而减小,在2.73~2.31ev范围内。随着掺杂浓度的增加,线性光学性质(如折射率、吸收率和介电常数)也有所增强。线性折射率随掺杂浓度的增加而增加,其范围在2.16到2.62之间,表明本样品是一种有用的光学窗口应用。chi((1))、chi((3))和n((2))等非线性光学性质分别在0.005到0.468、3.283 x 10(-142)到7.746 x 10(-12)esu和7.986 x 10(-13)到1.119 x 10(-10)esu的范围内变化。随着掺杂浓度的增加,薄膜的光学性能增强,这表明该薄膜适用于各种光学器件。最大介电常数在4.54到6.42之间,这表明本样品适用于光电器件。此外,还对其非线性光学特性进行了分析和报道。

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