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Index of Refraction Measurements in Liquid Substances of Full Field Using Holographic Interferometry

机译:全息干涉测量全场液体物质折射率测量指标

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We present a novel method based on Digital Holographic Interferometry to detect slight physical variations of refractive index with high sensitivity in liquid substances. The technique is grounded in the measurement of a phase difference between two reconstructed wavefields. The optical system was tested using a series of sodium chloride (NaCl) solutions to detect a variation in its physical property such as concentration. A first hologram records a wavefront coming from the light scattered by a common cylindrical glass container filled with certain NaCl solution. Later, a second hologram is recorded when the solution mentioned above slightly changes its concentration. The difference between the phase maps obtained from the correlation from the two holograms will provide information about a refractive index variation, which is directly related to a concentration change. The achieved results have proven to be more accurate and faster to get than with other techniques. The process requires just a few special optical elements and is able to measure the three-dimensional distribution of the refractive index of a sample. This method can be extended to identify adulteration in liquids, measure the variation in refractive index in gaseous flames, apart from analyzing and visualizing the mechanical properties of a liquid sample.
机译:我们提出了一种基于数字全息干涉测定法的新方法,以检测液体物质高灵敏度折射率的轻微物理变化。该技术接地在测量两个重建波场之间的相位差。使用一系列氯化钠(NaCl)溶液测试光学系统,以检测其物理性质如浓度的变化。第一全息图记录来自填充有某些NaCl溶液的公共圆柱形玻璃容器散射的光的波前。后来,当上述溶液略微改变其浓度时,记录第二全息图。从两个全息图的相关性获得的相位映射之间的差异将提供关于折射率变化的信息,其与浓度变化直接相关。已达到的结果已被证明可以更准确,更快地获得其他技术。该过程仅需要几个特殊的光学元件,并且能够测量样品的折射率的三维分布。该方法可以扩展以识别液体中的掺杂物,除了分析和可视化液体样品的机械性能之外,测量气体火焰中折射率的变化。

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