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Holographic three-dimensional display and hologram calculation based on liquid crystal on silicon device [Invited]

机译:基于硅器件上液晶的全息三维显示和全息计算[已邀请]

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摘要

Based on scalar diffraction theory and the geometric structure of liquid crystal on silicon (LCoS), we study the impulse responses and image depth of focus in a holographic three-dimensional (3D) display system. Theoretical expressions of the impulse response and the depth of focus of reconstructed 3D images are obtained, and experimental verifications of the imaging properties are performed. The results indicated that the images formed by holographic display based on the LCoS device were periodic image fields surrounding optical axes. The widths of the image fields were directly proportional to the wavelength and diffraction distance, and inversely proportional to the pixel size of the LCoS device. Based on the features of holographic 3D imaging and focal depth, we enhance currently popular hologram calculation methods of 3D objects to improve the computing speed of hologram calculation.
机译:基于标量衍射理论和硅上液晶(LCoS)的几何结构,我们研究了全息三维(3D)显示系统中的脉冲响应和像深。获得了脉冲响应和重建3D图像的景深的理论表达式,并对成像特性进行了实验验证。结果表明,基于LCoS器件的全息显示所形成的图像是围绕光轴的周期性像场。像场的宽度与波长和衍射距离成正比,与LCoS器件的像素大小成反比。基于全息3D成像和焦深的特点,我们增强了当前流行的3D物体全息计算方法,以提高全息计算的计算速度。

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