Study on optical constants of coatings at different temperatures

Xiaoyan Wang, Kui Yi, Guohang Hu, Yuanan Zhao, J. Shao
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Abstract

In order to analyze the thermal damage process under high energy laser irradiation, this paper focused on the high temperature condition and designed experimental device for coatings heating at different temperature. Ellipsometer was applied to measure the ellipsometric parameter (Ψ, ▵) of SiO2, HfO2 and Al2O3 single layer (prepared by electron beam (EB) evaporation on BK7 glass) at different temperatures, so the variation of optical constants with temperatures was obtained by inversion calculation. With the increase of temperature, the refractive index (n) of SiO2, HfO2 and Al2O3 single layer first decreased and then increased, the thickness (d) of these layers first increase and then decreased. However, the inflection point occurred at different temperature, and the amount of change was different for the layer with different material. The physical processes of thermal expansion and water evaporation were applied to explain the temperature dependent properties of the dielectric coatings.
不同温度下涂层光学常数的研究
为了分析高能激光辐照下涂层的热损伤过程,本文重点研究了高温条件,设计了不同温度下涂层加热的实验装置。利用椭偏仪测量了在BK7玻璃上电子束蒸发制备的SiO2、HfO2和Al2O3单层在不同温度下的椭偏参数(Ψ,次等),并通过反演计算得到了光学常数随温度的变化。随着温度的升高,SiO2、HfO2和Al2O3单层的折射率(n)先减小后增大,厚度(d)先增大后减小。然而,拐点发生在不同的温度下,不同材料层的变化量也不同。用热膨胀和水蒸发的物理过程解释了介质涂层的温度依赖性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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