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High-speed quantitative phase imaging of dynamic thermal deformation in laser irradiated films

机译:激光照射膜动态热变形的高速定量相位成像

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We present a technique for high-speed imaging of the dynamic thermal deformation of transparent substrates under high-power laser irradiation. Traditional thermal sensor arrays are not fast enough to capture thermal decay events. Our system adapts a Mach-Zender interferometer, along with a high-speed camera to capture phase images on sub-millisecond time-scales. These phase images are related to temperature by thermal expansion effects and by the change of refractive index with temperature. High power continuous-wave and long-pulse laser damage often hinges on thermal phenomena rather than the field-induced effects of ultra-short pulse lasers. Our system was able to measure such phenomena. We were able to record 2D videos of 1 ms thermal deformation waves, with 6 frames per wave, from a 100 ns, 10 mJ Q-switched Nd:YAG laser incident on a yttria-coated glass slide. We recorded thermal deformation waves with peak temperatures on the order of 100 degrees Celsius during non-destructive testing.
机译:我们在高功率激光照射下介绍了一种高速成像的高速成像技术。传统的热传感器阵列不足以捕获热衰减事件。我们的系统适应马赫纺织干涉仪,以及高速摄像机,以捕获亚毫秒的时间尺度上的相位图像。这些相位图像通过热膨胀效应和温度的变化与温度有关。高功率连续波和长脉冲激光损坏经常铰接在热现象上,而不是超短脉冲激光器的场诱导的效果。我们的系统能够测量这种现象。我们能够记录1 ms热变形波的2D视频,每波6帧,来自100ns,10 MJ Q开关的Nd:YAG激光入射在ytTria涂层的玻璃载玻片上。在非破坏性测试期间,我们在100摄氏度的峰值温度下记录了热变形波。

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