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Holographic synthesis of computer-designed 3D images

机译:计算机设计3D图像的全息合成

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Abstract: The yielding and displaying of the 3D images of object have been investigated for many years. The methods of designing non-spherical or complicated wavefront are important for fabrications of different optical elements with low aberrations, and also very useful for the synthesis of rainbow holograms of the 3D true-color objects. The display of 3D wavefront can be realized by several methods. In this paper the technique and system of holographic synthesis of computer designed-3D wavefront are described. The 2D amplitude distribution of light wavefront of object in the recording plane can be created by computer 3D image design and by sampling the wavefront in the angles. Then, these amplitude distributions after modified by computer are output into the holographic recording systems by means of high resolution liquid crystal display (LCD) plate to form the synthetic holographic master. The master is converted into image-plane rainbow hologram in the holographic systems. The advantages of the technique, compared with the CGH and conventional holographic method, are obvious. The LCD output is simple and fast. The wavefronts of true-color object can also be fabricated by this system. The different coding holographic gratings and elements, the true-color 3D rainbow holograms can be made successfully with the technique combined with spatial frequency-coding and color- controlling technology.!0
机译:摘要:物体的3D图像的产生和显示已经研究了很多年。设计非球形或复杂波阵面的方法对于制造低像差的不同光学元件很重要,对于3D真彩色物体的彩虹全息图的合成也非常有用。 3D波阵面的显示可以通过几种方法来实现。本文介绍了计算机设计的3D波阵面全息合成技术和系统。可以通过计算机3D图像设计并通过对角度中的波前进行采样来创建记录平面中对象的光波前的2D振幅分布。然后,这些经过计算机修改的振幅分布通过高分辨率液晶显示(LCD)板输出到全息记录系统中,以形成合成全息图原版。在全息系统中,将原版转换为像平面彩虹全息图。与CGH和传统的全息方法相比,该技术的优势显而易见。 LCD输出既简单又快速。真彩色物体的波前也可以通过该系统制造。结合空间频率编码和色彩控制技术,可以成功制作出不同的编码全息光栅和元素,即真彩色3D彩虹全息图!! 0

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