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Fabrication of refractive freeform array masters for artificial compound eye cameras

机译:人工复眼相机的折射自由曲面阵列母盘的制作

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There is a huge demand on miniaturized cameras in the field of mobile consumer electronics. These cameras are currently based on miniaturized single aperture optics. In order to further decrease the thickness of miniaturized camera systems, a multichannel imaging principle needs to be used. These artificial compound eye cameras permit a further decrease in thickness by a factor of two in comparison to miniaturized single aperture optics with same resolution and pixel size. Their fabrication process is currently based on the reflow of photoresist. Due to physical limitations of this technique, only spherical and ellipsoidal surface profiles of the single lenslets are achievable. Consequently, the potential for correcting optical aberrations is restricted leading to limited image quality and resolution. This can be improved significantly by the use of refractive freeform arrays. Due to the non-symmetrical and aspherical surface shapes of the single lenslets, the fabrication by the reflow of photoresist is no longer possible. Therefore, we propose an approach for the fabrication of these structures based on the combination of an ultra-precision machining process together with a microimprinting approach.
机译:移动消费电子产品领域的小型化摄像机存在巨大需求。这些摄像机目前基于小型化的单孔光学器件。为了进一步降低小型化相机系统的厚度,需要使用多通道成像原理。与具有相同分辨率和像素尺寸相同的分辨率和像素尺寸的小型化单孔光学器件相比,这些人造复合眼镜允许进一步降低两倍。它们的制造过程目前基于光致抗蚀剂的回流。由于该技术的物理限制,只能实现单个透镜的球形和椭圆形表面轮廓。因此,校正光学像差的可能性受到限制导致图像质量和分辨率有限。通过使用折射自由阵列可以显着提高这一点。由于单个透镜的非对称和非球面形状,通过光致抗蚀剂的回流制造不再可能。因此,我们提出了一种基于超精密加工过程的组合以及微视线方法来制造这些结构的方法。

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