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High-speed phase-shifting interferometry using triangular prism for time-resolved temperature measurement

机译:使用三角棱镜的高速相移干涉仪,用于时间分辨温度测量

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This study proposes a high-speed phase-shifting interferometer with an original optical prism. This phase-shifting interferometer consists of a polarizing Mach-Zehnder interferometer, an original optical prism, a high-speed camera, and an image-processing unit for a three-step phase-shifting technique. The key aspect of the application of the phase-shifting technique to high-speed experiments is an original prism, which is designed and developed specifically for a high-speed phase-shifting technique. The arbaa prism splits an incident beam into four output beams with different information. The interferometer was applied for quantitative visualization of transient heat transfer. In order to test the optical system for measuring high-speed phenomena, the temperature during heat conduction was measured around a heated thin tungsten wire (diameter of 5 mu m) in water. The visualization area is approximately 90 mu m x 210 mu m, and the spatial resolution is 3.5 mu m at 300,000 fps of the maximum temporal resolution with a high-speed camera. The temperature fields around the heated wire were determined by converting phase-shifted data using the inverse Abel transform. Finally, the measured temperature distribution was compared with numerical calculations to validate the proposed system; a good agreement was obtained. (C) 2015 Optical Society of America
机译:这项研究提出了一种带有原始光学棱镜的高速相移干涉仪。该相移干涉仪由偏振马赫曾德尔干涉仪,原始光学棱镜,高速相机和用于三步相移技术的图像处理单元组成。相移技术在高速实验中的应用的关键方面是原始棱镜,它是专为高速相移技术设计和开发的。阿尔巴棱镜将入射光束分成具有不同信息的四个输出光束。干涉仪用于瞬时传热的定量可视化。为了测试用于测量高速现象的光学系统,在水中加热的细钨丝(直径为5μm)周围测量了导热期间的温度。可视化区域大约为90μmx210μm,在使用高速相机拍摄的最大时间分辨率为300,000 fps时,空间分辨率为3.5μm。通过使用逆Abel变换转换相移数据来确定加热线周围的温度场。最后,将测得的温度分布与数值计算进行比较,以验证所提出的系统;获得了良好的协议。 (C)2015年美国眼镜学会

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