DocumentCode
1084797
Title
Thermooptically induced bias drift in fiber optical Sagnac interferometers
Author
Mohr, Friedemann
Author_Institution
Dept. of Phys., Fachhochschule Hildesheim-Holzminden, Gottingen, Germany
Volume
14
Issue
1
fYear
1996
fDate
1/1/1996 12:00:00 AM
Firstpage
27
Lastpage
41
Abstract
In a fiber optical Sagnac interferometer bias drift arises if the coil experiences varying environmental conditions. We develop a formalism that describes error generation through dynamically changing inhomogeneities in the fiber, taking into account specific winding geometries. As possible sources we assume thermal waves propagating radially through the coil. We verify the basic relations by comparing to results from a heating experiment on a conventional, so-called cylinder coil. We theoretically explore the performance obtained from coiling schemes with improved characteristics. The quadrupolar scheme constitutes the best solution considering rate and angular error, however, it exhibits a pronounced unsymmetry with respect to the propagation direction of the disturbance. We show that, for a given coiling scheme, the asymptotic angular error depends only on the steady state temperature profile, being independent of the preceding transitional behavior. For the quadrupole arrangement with given fiber length and coil diameter it is uniquely determined by the amount of power traversing the coil cross-sectional area, and is independent of the number of layers. Our theory has been developed to characterize coiling schemes in their dynamical-rather than only asymptotic-behavior. It can thus be extended to cover other dynamical sources of error, e.g. vibrational or acoustical
Keywords
coils; fibre optic sensors; light interferometers; measurement errors; thermo-optical effects; windings; angular error; asymptotic angular error; bias drift; coil cross-sectional area; coil diameter; coiling schemes; cylinder coil; dynamically changing inhomogeneities; environmental conditions; error generation; error sources; fiber length; fiber optical Sagnac interferometers; heating experiment; propagation direction; quadrupolar scheme; quadrupole arrangement; steady state temperature profile; thermal waves; thermooptically induced bias drift; unsymmetry; winding geometries; Coils; Geometrical optics; Heating; Optical fiber theory; Optical fibers; Optical interferometry; Optical propagation; Sagnac interferometers; Steady-state; Temperature dependence;
fLanguage
English
Journal_Title
Lightwave Technology, Journal of
Publisher
ieee
ISSN
0733-8724
Type
jour
DOI
10.1109/50.476134
Filename
476134
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