Paper
7 March 2006 Fringe formation in a dual-beam symmetric illumination-observation TV holography system: an analysis
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Abstract
Leendertz dual beam symmetric illumination - normal observation arrangement is widely employed for real time evaluation of in-plane displacement components as well as surface shape. Instead of observing along the optical axis, we have examined the Leendertz arrangement by observing the scattered light along the direction of illumination beams, and imaged as two separate images onto a photo sensor of a CCD camera. In this paper, we will show that the interference between the speckle fields generated from one of the illuminating beams with the specular reflection speckle fields from the second illuminating beam, is responsible for fringe formation along the directions of observation. The interferometer is a combination of two channels; each of which senses independently and simultaneously the information pertaining to either the in-plane displacement component of a deformation vector, or surface relief variation of a three dimensional object. A summary of possible information that can be extracted from the present arrangement is also highlighted. Experimental results using a four-frame phase shifting technique are illustrated.
© (2006) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Nandigana K. Krishna Mohan, Angelica Andersson, Mikael Sjoedahl, and Nils-Erik Molin "Fringe formation in a dual-beam symmetric illumination-observation TV holography system: an analysis", Proc. SPIE 4101, Laser Interferometry X: Techniques and Analysis, (7 March 2006); https://doi.org/10.1117/12.498450
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KEYWORDS
Fringe analysis

Collimation

Holography

CCD cameras

Image processing

3D image processing

Phase shifts

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