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Quantitative phase imaging applied to laser damage detection and analysis

机译:定量相位成像技术应用于激光损伤检测与分析

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摘要

We investigate phase imaging as a measurement method for laser damage detection and analysis of laser-induced modification of optical materials. Experiments have been conducted with a wavefront sensor based on lateral shearing interferometry associated with a high-magnification optical microscope. The system has been used for the in-line observation of optical thin films and bulk samples, laser irradiated in two different conditions: 500 fs pulses at 343 and 1030 nm, and millisecond to second irradiation with a CO2 laser at 10.6 mu m. We investigate the measurement of the laser-induced damage threshold of optical material by detection and phase changes and show that the technique realizes high sensitivity with different optical path measurements lower than 1 nm. Additionally, the quantitative information on the refractive index or surface modification of the samples under test that is provided by the system has been compared to classical metrology instruments used for laser damage or laser ablation characterization (an atomic force microscope, a differential interference contrast microscope, and an optical surface profiler). An accurate in-line measurement of the morphology of laser-ablated sites, from few nanometers to hundred microns in depth, is shown. (C) 2015 Optical Society of America
机译:我们研究相位成像作为激光损伤检测和激光诱导的光学材料改性分析的一种测量方法。已经使用基于与高倍率光学显微镜相关联的横向剪切干涉法的波前传感器进行了实验。该系统已用于在线观察光学薄膜和大块样品,在两种不同条件下进行激光照射:在343和1030 nm处有500 fs脉冲,以及在10.6μm处用CO2激光进行毫秒至秒的照射。我们调查了通过检测和相位变化对光学材料的激光损伤阈值的测量,结果表明,该技术在低于1 nm的不同光路测量中实现了高灵敏度。此外,系统提供的有关被测样品的折射率或表面改性的定量信息已与用于激光损伤或激光烧蚀表征的经典计量仪器(原子力显微镜,微分干涉对比显微镜,和光学表面轮廓仪)。显示了从几纳米到几百微米深度的激光烧蚀部位形态的精确在线测量。 (C)2015年美国眼镜学会

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