钻石
材料科学
热的
波前
测距
光学
热稳定性
光电子学
航程(航空)
理论(学习稳定性)
干涉测量
直接成像
金刚石车削
反射(计算机编程)
大气温度范围
纳米技术
制作
光路长度
作者
Liu Li,Arttu Nieminen,Wen‐Jie Dou,Yong‐Yang Zhu,Hümeyra Çağlayan,Peinan Ni,Chong‐Xin Shan
摘要
ABSTRACT While metalenses offer a path to miniaturize and functionalize optical systems, their operation in broad thermal environments has been hindered drastically by performance degradation. Conventional materials exhibit significant thermally‐induced aberrations, causing failure across wide temperature ranges. Herein, we exploit the exceptional thermal stability of diamond to demonstrate metalenses that maintain consistent diffraction‐limited imaging from −100°C to 500°C. We further develop a thermal analysis framework that quantifies wavefront error caused by temperature variation, revealing the superior stability of diamond compared to other material platforms. This result establishes a platform for robust, compact imaging systems capable of operating in broad temperature range, ranging from deep‐space missions to cryogenic research and harsh industrial settings.
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