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Shift-invariant real-time edge-enhanced VanderLugt correlator using video-rate compatible photorefractive polymer

机译:使用视频速率兼容的光折变聚合物进行位移不变的实时边缘增强VanderLugt相关器

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摘要

We demonstrated a real-time shift-invariant VanderLugt correlator (VLC). The VLC was implemented with a 37 (mu)m thick bis-triarylamine side-chain polymer matrix photorefractive (PR) polymer composite operating at 532 nm wavelength. Correlation selectivity was enhanced by real-time edge enhancement. The advantage of the VLC is that its architecture allows overcoming the PR material response speed. A correlator of this type enables a fast shift-invariant search of a large optical image database. A high degree of shift invariance in our correlator was possible because of the material thickness. The angular bandwidth of this material was measured experimentally in a degenerate four-wave mixing setup, and it was found to be in a very good agreement with the theory.
机译:我们演示了实时移位不变的VanderLugt相关器(VLC)。 VLC用37微米厚的双三芳基胺侧链聚合物基体光折变(PR)聚合物复合材料实现,该复合材料在532 nm波长下工作。通过实时边缘增强来增强相关选择性。 VLC的优势在于其架构可以克服PR材料的响应速度。这种类型的相关器能够对大型光学图像数据库进行快速平移不变搜索。由于材料的厚度,我们相关器中的高度移动不变性是可能的。在简并的四波混合设置中通过实验测量了这种材料的角带宽,发现它与理论非常吻合。

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