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Lensless zooming Fourier transform digital holography

机译:无镜头变焦傅立叶变换数字全息

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摘要

Lensless Fourier-Transform Digital Holography through an aperture has been demonstrated some years ago. This technique allows to record and reconstruct images of large objects placed at short distances from the camera. In this paper we show that the distance between the aperture plane and the camera can be used to control the field of view and, therefore, moving the camera away from or towards the aperture has an effect similar to zooming a lens in and out, respectively. We also show that the F/# number of the aperture must be kept constant to hold the relative lateral resolution, i.e., to have a constant speckle size while zooming. With this improvement, Lensless Fourier-Transform Digital Holography provides a functionality similar to Image-Plane Digital Holography. Both involve practically the same computational cost. The former has the benefit of its experimental simplicity but has the drawback of not providing a real-time image of the object, which is useful for alignment, as the latter does.
机译:几年前已经证明了通过光圈进行无透镜傅立叶变换数字全息术。该技术可以记录和重建与相机相距不远的大型物体的图像。在本文中,我们证明了光圈平面和相机之间的距离可用于控制视野,因此,使相机远离或朝向光圈移动具有类似于分别放大和缩小镜头的效果。 。我们还表明,光圈的F /#数必须保持恒定,以保持相对的横向分辨率,即在缩放时具有恒定的散斑大小。通过此改进,无透镜傅立叶变换数字全息术提供了类似于图像平面数字全息术的功能。两者实际上都涉及相同的计算成本。前者的优点是实验简单,但缺点是不能提供对象的实时图像,这与后者一样对对齐很有用。

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