DocumentCode
1098651
Title
Measurement of axially nonsymmetrical refractive-index distribution of-a single-mode fiber by a multidirectional scattering-pattern method
Author
Okoshi, Takanori ; Nishimura, Masayuki
Author_Institution
Univ. of Tokyo, Tokyo, Japan
Volume
1
Issue
1
fYear
1983
fDate
3/1/1983 12:00:00 AM
Firstpage
9
Lastpage
14
Abstract
A high spatial resolution, typically
m, has previously been achieved by the "scattering-pattern method" proposed by one of the authors for measuring refractive-index profiles of optical fibers. This method, therefore, is especially suitable for measuring the index profiles of single-mode fibers. Described in this paper is the modification of this technique for measuring nonsymmetrical index distributions in single-mode fibers. In the modified method, a two-dimensional index distribution in an axially nonsymmetrical fiber is computed from a set of its forward scattering patterns for different directions of incident light. The distribution to be measured is somewhat restricted, i.e., it must have point symmetry. However, the point symmetry includes double symmetry which holds in most of polarization-maintaining fibers. The spatial resolution is as high as the scattering-pattern method for the axially symmetrical case; in the present experiment the resolution limit is 0.28 μm. Results of computer simulation and measurement are shown.
m, has previously been achieved by the "scattering-pattern method" proposed by one of the authors for measuring refractive-index profiles of optical fibers. This method, therefore, is especially suitable for measuring the index profiles of single-mode fibers. Described in this paper is the modification of this technique for measuring nonsymmetrical index distributions in single-mode fibers. In the modified method, a two-dimensional index distribution in an axially nonsymmetrical fiber is computed from a set of its forward scattering patterns for different directions of incident light. The distribution to be measured is somewhat restricted, i.e., it must have point symmetry. However, the point symmetry includes double symmetry which holds in most of polarization-maintaining fibers. The spatial resolution is as high as the scattering-pattern method for the axially symmetrical case; in the present experiment the resolution limit is 0.28 μm. Results of computer simulation and measurement are shown.Keywords
Optical fiber measurements; Optical refraction; Optical scattering; Computer simulation; Distributed computing; Laser beams; Light scattering; Optical fiber polarization; Optical fibers; Optical reflection; Optical refraction; Optical scattering; Spatial resolution;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/JLT.1983.1072084
Filename
1072084
Link To Document