Progress in infrared transparencies under opto electro thermo and mechanical environments

Liangge Xu, Shuai Guo, Victor Ralchenko, Gang Gao, Sam Zhang, Jiaqi Zhu
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Abstract

Abstract In recent years, there has been a growing interest and research focus on infrared optical thin films as essential components in infrared optical systems. In practical applications, extreme environmental factors such as aerodynamic heating and mechanical stresses, electromagnetic interferences, laser interferences, sand erosions, and rain erosions all lead to issues including cracking, wrinkling, and delaminations of infrared thin films. Extreme application environment imposes stringent requirements on functional films, necessitating high surface hardness, stability, and adhesion. Additionally, for multispectral optical transmissions, infrared optical thin films are expected to exhibit high transmittance in the visible and far-infrared wavelength bands while possessing tunability and optical anti-reflection properties in specific wavelength ranges. Electromagnetic shielding requires superior electrical performance, while resisting laser interference demands rapid phase change capabilities. This paper focuses on current research progresses in infrared optical thin films under extreme conditions such as opto, electro, thermos and mechanical environments. Table of Contents Graphic gives detailed outline. Future opportunities and challenges are also highlighted. Graphical Abstract
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光电、热、机械环境下红外透性研究进展
红外光学薄膜作为红外光学系统的重要组成部分,近年来受到越来越多的关注和研究。在实际应用中,空气动力学加热和机械应力、电磁干扰、激光干扰、砂石侵蚀和雨水侵蚀等极端环境因素都会导致红外薄膜开裂、起皱和分层等问题。极端的应用环境对功能性薄膜提出了严格的要求,需要高表面硬度、稳定性和附着力。此外,对于多光谱光传输,红外光学薄膜有望在可见光和远红外波段具有高透射率,同时在特定波长范围内具有可调性和光学抗反射特性。电磁屏蔽需要卓越的电气性能,而抵抗激光干扰则需要快速相变能力。重点介绍了红外光学薄膜在光、电、热、机械等极端环境下的研究进展。目录图给出了详细的大纲。同时也强调了未来的机遇和挑战。图形抽象
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期刊介绍: The Indian Society for Surface Science and Technology is an organization for the cultivation, interaction and dissemination of knowledge in the field of surface science and technology. It also strives to promote Industry-Academia interaction
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