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Comparative study with double-exposure digital holographic interferometry and a Shack-Hartmann sensor to characterize transparent materials

机译:使用双曝光数字全息干涉仪和Shack-Hartmann传感器对透明材料进行表征的对比研究

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摘要

We compare wave-front measurements using double-exposure digital holography and a Shack-Hartmann sensor. A voltage-driven liquid-crystal wedge modulates the optical wave front and provides a refractive-index gradient typical of interesting transparent materials. Measurement accuracy and reliability are similar for both methods. In our opinion, digital holographic interferometry has several advantages for both laboratory and field environments. When compared with Shack-Hartmann methods, these advantages include hardware simplicity and robustness, relative insensitivity to sample dynamic range, and less computational demanding and more straightforward data evaluation algorithms. We believe that digital holography provides the methodology of choice for field studies of transparent materials such as microgravity protein crystal growth experiments.
机译:我们使用双曝光数字全息技术和Shack-Hartmann传感器比较波前测量值。电压驱动的液晶楔形物调制光波前,并提供有趣的透明材料特有的折射率梯度。两种方法的测量精度和可靠性相似。我们认为,数字全息干涉仪在实验室和现场环境中均具有多个优势。与Shack-Hartmann方法相比,这些优点包括硬件的简单性和鲁棒性,对样本动态范围的相对不敏感以及较少的计算需求和更直接的数据评估算法。我们认为,数字全息术为透明材料的现场研究(例如微重力蛋白质晶体生长实验)提供了选择的方法。

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