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Using DSLR Cameras in Digital Holography

机译:在数码全息中使用DSLR相机

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In Digital Holography (DH), the size of the bidimensional image sensor to record the digital hologram, plays a key role on the performance of this imaging technique; the larger the size of the camera sensor, the better the quality of the final reconstructed image. Scientific cameras with large formats are offered in the market, but their cost and availability limit their use as a first option when implementing DH. Nowadays, DSLR cameras provide an easy-access alternative that is worthwhile to be explored. The DSLR cameras are a wide, commercial, and available option that in comparison with traditional scientific cameras, offer a much lower cost per effective pixel over a large sensing area. However, in the DSLR cameras, with their RGB pixel distribution, the sampling of information is different to the sampling in monochrome cameras usually employed in DH. This fact has implications in their performance. In this work, we discuss why DSLR cameras are not extensively used for DH, taking into account the problem reported by different authors of object replication. Simulations of DH using monochromatic and DSLR cameras are presented and a theoretical deduction for the replication problem using the Fourier theory is also shown. Experimental results of DH implementation using a DSLR camera show the replication problem.
机译:在数字全息术(DH)中,用于记录数字全息图的二维图像传感器的尺寸在该成像技术的性能中起着关键作用。相机传感器的尺寸越大,最终重建图像的质量越好。市场上提供了大格式的科学相机,但是它们的成本和可用性限制了它们在实施DH时的首选。如今,DSLR相机提供了一种易于使用的替代品,值得探讨。与传统的科学相机相比,DSLR相机是一种广泛的,商业的和可用的选择,在较大的感应区域上,每有效像素的成本要低得多。但是,在具有RGB像素分布的DSLR相机中,信息的采样与DH中通常使用的单色相机中的采样不同。这个事实影响了它们的性能。在这项工作中,我们考虑到对象复制的不同作者报告的问题,讨论了为什么不将DSLR相机广泛用于DH。提出了使用单色相机和DSLR相机进行DH的模拟,并使用傅立叶理论对复制问题进行了理论推论。使用DSLR相机执行DH的实验结果表明存在复制问题。

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