Paper
27 May 2003 Lensless zooming Fourier transform digital holography
Angel F. Doval, Cristina Trillo, Oscar Lopez, Daniel Cernadas, Carlos Lopez, Benito Vasquez Dorrio, Jose L. Fernandez, Mariano Perez-Amor
Author Affiliations +
Proceedings Volume 4933, Speckle Metrology 2003; (2003) https://doi.org/10.1117/12.516617
Event: Speckle Metrology 2003, 2003, Trondheim, Norway
Abstract
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.
© (2003) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Angel F. Doval, Cristina Trillo, Oscar Lopez, Daniel Cernadas, Carlos Lopez, Benito Vasquez Dorrio, Jose L. Fernandez, and Mariano Perez-Amor "Lensless zooming Fourier transform digital holography", Proc. SPIE 4933, Speckle Metrology 2003, (27 May 2003); https://doi.org/10.1117/12.516617
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KEYWORDS
Cameras

Digital holography

Holograms

3D image reconstruction

Speckle

Fourier transforms

Image processing

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