Thermal deformation suppression method for chalcogenide glass based on deep cryogenic treatment

Hao Zhang, Ji-Hyeong An, Weihao Li, Xiao-dong Zhang
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Abstract

In infrared optical system, changes of the reflective index will result in a decrease in imaging quality. Therefore, athermalized treatment is necessary. Chalcogenide glasses (As40Se60) are the ideal material for thermal aberration correction in infrared optical systems, which have excellent infrared optical properties, especially the transmission performance and temperature characteristics. However, thermal deformation is inevitable for chalcogenide glasses in the coating process, which is a major cause of quality deterioration. In this paper, a deep cryogenic treatment with a series of specific parameters is carried out and a comparative experiment is conducted. The result shows that the thermal stability of chalcogenide glass in the coating process is improved markedly after deep cryogenic treatment. The thermal deformation of the optical surface is reduced and the surface accuracy is controllable.
基于深冷处理的硫系玻璃热变形抑制方法
在红外光学系统中,反射系数的变化会导致成像质量的下降。因此,热处理是必要的。硫系玻璃(As40Se60)具有优异的红外光学性能,特别是传输性能和温度特性,是红外光学系统中热像差校正的理想材料。而硫系玻璃在镀膜过程中,热变形是不可避免的,是造成质量恶化的主要原因。本文进行了一系列特定参数的深冷处理,并进行了对比实验。结果表明,经过深冷处理后,硫系玻璃在镀膜过程中的热稳定性明显提高。减少了光学表面的热变形,表面精度可控。
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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