ELECTRO-OPTICS  LABORATORY

Department of Electrical and Computer Engineering

Edge and contrast enhancement using spatially incoherent correlation holography techniques

Vijayakumar Anand, Joseph Rosen, Soon Hock Ng, Tomas Katkus, Denver P. Linklater, Elena P. Ivanova, Saulius Juodkazis

Image enhancement techniques (such as edge and contrast enhancement) are essential for many imaging applications. In incoherent holography techniques such as Fresnel incoherent correlation holography (FINCH), the light from an object is split into two, each of which is modulated differently from one another by two different quadratic phase functions and coherently interfered to generate the hologram. The hologram can be reconstructed via a numerical backpropagation. The edge enhancement procedure in FINCH requires the modulation of one of the beams by a spiral phase element and, upon reconstruction, edge-enhanced images are obtained. An optical technique for edge enhancement in coded aperture imaging (CAI) techniques that does not involve two-beam interference has not been established yet. In this study, we propose and demonstrate an iterative algorithm that can yield from the experimentally recorded point spread function (PSF), a synthetic PSF that can generate edge-enhanced reconstructions when processed with the object hologram. The edge-enhanced reconstructions are subtracted from the original reconstructions to obtain contrast enhancement. The technique has been demonstrated on FINCH and CAI methods with different spectral conditions.

Publication language English
Journal Photonics
Volume 8
Issue number 6
Publication status Published - 01.06.2021
224

Keywords

Coded aperture imaging
Contrast enhancement
Edge enhancement
Fresnel incoherent correlation holography
Vortex filter

ASJC Scopus subject areas

Atomic and Molecular Physics, and Optics
Instrumentation
Radiology Nuclear Medicine and imaging
Access to Document
10.3390/photonics8060224
Other files and links
Link to publication in Scopus