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Performances Comparison of Amplitude Object and Phase Object Recording in LiNbO_3 crystal

机译:LiNbO_3晶体中振幅目标和相位目标记录性能的比较

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摘要

We proposed a novel optical geometry for holographic data storage in which a phase input pattern was involved. The input phase pattern was derived from an amplitude pattern by iterative Fourier transform algorithm. Two important parameters of reconstructed images, diffraction efficiency and image quality, were discussed and measured. Our geometry exhibited uniform holographic recording as well as uniform erasing. Moreover, the loss of light due to absorption in the input pattern was minimized. The little light loss also ensured a higher diffraction efficiency of the reconstructed image.
机译:我们提出了一种全息数据存储的新型光学几何结构,其中涉及相位输入模式。输入相位模式是通过迭代傅立叶变换算法从幅度模式中得出的。讨论并测量了重建图像的两个重要参数,即衍射效率和图像质量。我们的几何图形显示出均匀的全息记录以及均匀的擦除效果。此外,由于输入图案中的吸收引起的光损失被最小化。光损失少还确保了重建图像的更高衍射效率。

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