Microinterferometric optical phase tomography for measuring small, asymmetric refractive-index differences in the profiles of optical fibers and fiber devices
- 20 January 2005
- journal article
- research article
- Published by Optica Publishing Group in Applied Optics
- Vol. 44 (3) , 316-327
- https://doi.org/10.1364/ao.44.000316
Abstract
A new technique, microinterferometric optical phase tomography, is introduced for use in measuring small, asymmetric refractive-index differences in the profiles of optical fibers and fiber devices. The method combines microscopy-based fringe-field interferometry with parallel projection-based computed tomography to characterize fiber index profiles. The theory relating interference measurements to the projection set required for tomographic reconstruction is given, and discrete numerical simulations are presented for three test index profiles that establish the technique’s ability to characterize fiber with small, asymmetric index differences. An experimental measurement configuration and specific interferometry and tomography practices employed in the technique are discussed.Keywords
This publication has 24 references indexed in Scilit:
- Numerical analysis of the contribution of the transverse asymmetry in the photo-induced index change profile to the birefringence of optical fiberJournal of Lightwave Technology, 2002
- Obtaining the phase of an interferogram by use of an evolution strategy: Part IApplied Optics, 2002
- Three-dimensional refractive index profile of a GRIN optical waveguide using multiple beam interference fringesOptics Communications, 2001
- Quantitative phase tomographyOptics Communications, 2000
- Phase-evaluation methods in whole-field optical measurement techniquesMeasurement Science and Technology, 1999
- Birefringence reduction in side-written photoinduced fiber devices by a dual-exposure methodOptics Letters, 1994
- Optical fibers profiling by phase-stepping transverse interferometryJournal of Lightwave Technology, 1994
- Characterization of the lightguiding structure of optical fibers by atomic force microscopyJournal of Lightwave Technology, 1994
- Microscopic computer tomography measurement of nonaxisymmetrically distributed optical fiber refractive indexJournal of Lightwave Technology, 1988
- Focusing method for nondestructive measurement of optical fiber index profilesApplied Optics, 1979