纳米尺度
石墨烯
共焦显微镜
材料科学
显微镜
色阶
消散
电子设备和系统的热管理
共焦
纳米技术
扫描热显微术
热的
光学
光电子学
物理
机械工程
热力学
工程类
作者
Wei-Shiuan Tseng,Yu-Chi Pan,Tzin-Hsin Liao,Shih-Hsiang Hsiao,Ming‐Che Chan
摘要
In this Letter, dynamic nano-thermal expansion images of reflective mirrors from high-intensity incident laser beams were observed in situ. The inspections are based on rapid 3D surface morphology changes on the reflective surfaces, captured by a Chromatic Confocal Microscope with Nanoscale Sensitivity (CCMNS). Nano-expansions of two types of coatings were studied: the E02 dielectric coating (coating 1) and the graphene-on-E02 complex film (coating 2), both applied to the same fused silica substrate. The superior thermal dissipation properties of coating 2, including enhanced heat dissipation, suppressed wavefront distortion, and its unique negative expansion coefficient, were observed. In addition to studying the effects of graphene coating, the CCMNS demonstrates an accurate and efficient approach for evaluating reflective mirrors. Moreover, the proposed methodology possesses enormous potential across various fields, ranging from estimating photonic elements dealing with high-intensity beams to physical thermal conductivity measurements.
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