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Advances in pulsed holographic interferometry with photorefractive crystals

机译:光折射晶体在脉冲全息干涉术中的研究进展

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Photorefractive crystals offer many advantages over other classical holographic recording media. They allow fast in-situ processable holographic recording as well as indefinite reusability. Moreover high signal-to-noise ratio can be reached as well as high resolutions. We present the results obtained by pulsed holographic interferometry obtained with photorefractive crystals. First experiments showing the potentiality of photorefractive crystals for such applications will be reviewed. Some limitations were pointed out and led us to consider new developments under the frame of an European-funded project. The PHIFE european project (Pulsed Holographic Interferometer for the analysis of Fast Events) aims at developing a full field measurement system at a high repetition rate, based on a double-pulse YAG Q-switch laser. This device will be used for the analysis of vibrations and for aerodynamic studies. Different crystals are considered which are adapted to the fundamental line of the YAG (AsGa or CdTe crystals) or after frequency doubling at 532 nm (Bi_(12)SiO_(20)). Different crystal configurations and recording geometries are compared. Also different innovative phase quantification techniques are studied and take into account some special properties of the PRCs. We present the results obtained so far in the first development phases of the project.
机译:与其他经典的全息记录介质相比,光折射晶体具有许多优势。它们可以实现快速的原位可处理全息照相记录以及无限的可重复使用性。此外,可以达到高信噪比以及高分辨率。我们介绍了通过光折射晶体获得的脉冲全息干涉法获得的结果。将回顾显示光折变晶体在此类应用中的潜力的第一批实验。指出了一些局限性,使我们考虑了在欧洲资助的项目框架下的新发展。 PHIFE欧洲项目(用于分析快速事件的脉冲全息干涉仪)旨在开发基于双脉冲YAG调Q激光器的高重复率全场测量系统。该设备将用于振动分析和空气动力学研究。考虑了适合于YAG基本线的不同晶体(AsGa或CdTe晶体)或在532 nm处倍频后的晶体(Bi_(12)SiO_(20))。比较了不同的晶体配置和记录几何形状。还研究了各种创新的相位量化技术,并考虑了PRC的某些特殊属性。我们介绍了到目前为止在项目的第一个开发阶段中获得的结果。

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