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Programmable CGH on photochromic material using DMD generated masks

机译:使用DMD生成的面罩在光致变色材料上的可编程CGH

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Computer Generated Holograms (CGHs) are used for wavefront shaping and complex optics testing, including aspherical and free-form optics. Today, CGHs are recorded directly with a laser or intermediate masks, allowing only the realization of binary CGHs; they are efficient but can reconstruct only pixilated images. We propose a Digital Micro-mirror Device (DMD) as a reconfigurable mask, to record rewritable binary and grayscale CGHs on a photochromic plate. The DMD is composed of 2048x1080 individually controllable micro-mirrors, with a pitch of 13.68 urn. This is a real-time reconfigurable mask, perfect for recording CGHs. The photochromic plate is opaque at rest and becomes transparent when it is illuminated with visible light of suitable wavelength. We have successfully recorded the very first amplitude grayscale CGH, in equally spaced levels, so called stepped CGH. We recorded up to 1000×1000 pixels CGHs with a contrast greater than 50, using Fresnel as well as Fourier coding scheme. Fresnel's CGH are obtained by calculating the inverse Fresnel transform of the original image at a given focus, ranging from 50cm to 2m. The reconstruction of the recorded images with a 632.8nm He-Ne laser beam leads to images with a high fidelity in shape, intensity, size and location. These results reveal the high potential of this method for generating programmable/rewritable grayscale CGHs, which combine DMDs and photochromic substrates.
机译:计算机生成全息图(CGHS)用于波前塑造和复杂的光学测试,包括非球面和自由形式光学器件。今天,CGHS直接用激光或中间掩模录制,只允许实现二元CGHS;它们是高效的,但只能重建像素化图像。我们将数字微镜装置(DMD)提出作为可重新配置的掩模,以在光致变色板上记录可重写的二进制和灰度CGHS。 DMD由2048x1080可单独控制的微镜组成,间距为13.68瓮。这是一个实时可重新配置的面具,非常适合录制CGHS。光致变色板在静止时是不透明的,并且当用合适波长的可见光照明时变得透明。我们已成功录制了非常间隔的水平的第一个幅度灰度CGH,因此称为阶梯式CGH。我们使用菲涅耳以及傅里叶编码方案录制了最多1000×1000像素的CGHS,比对比度大于50。通过计算给定焦点的原始图像的逆菲涅耳变换,从50cm到2m的逆菲涅耳变换来获得Fresnel的CGH。用632.8nm的He-Ne激光束重建记录的图像,导致具有高保真度,强度,尺寸和位置的高保真的图像。这些结果揭示了该方法的高潜力,用于产生可编程/可重写灰度CGH的CGH,其组合DMD和光致变色基板。

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