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Industry If all of the light propagating in a PM fiber is polarized parallel to the same fiber axis, the polarization state of the light output by the fiber will be independent of temperature.
Industry An analytical method is presented for the calculation of 1 thermal stress and the material birefringence in polarization-maintaining 1 optical fiber. The method is based on the thermoelastic displacement c
Industry We improve the calculation method of geometrical birefringence and gives the complete calculation process by means of thermal stress theory and polarization optics theory.
Industry This paper deals with the phase shift development in the polarization-maintaining fiber owing to different temperatures of an applied defined body, where both polarization axes are excited.
Industry General solutions of thermal stresses and material birefringence in polarization-maintaining optical fibers are presented. The solutions give the stresses and birefringence at every point in the cross section of
Industry Abstract: An analytical method for the calculation of thermal stress in polarization-maintaining optical fibers is presented. The method is based on the thermoelastic potential and is appropriate for
Industry Thermal stress characteristics for polarization-maintaining optical fibers (PMFs) with panda shape, bow-tie shape, elliptical shape, and "pseudo-rectangle" shape are analyzed by finite element method.
Industry Abstract—An analytical model for estimating the stress -induced birefringence in true Panda-type polarization -maintaining fibers with imperfect geometry has been developed in this letter.
Industry General solutions of thermal stresses and material birefringence in polarization-maintaining optical fibers are presented. The solutions give the stresses and birefringence at every
Industry Finally, we propose a set of param-eters based on the distributed polarization analysis to quantita-tively evaluate the quality of PM fibers. We believe that the meth-ods and processes described in this
Industry Proper use can be applied in the area of optical fiber thermal field disturbance sensor. For a description of polarization properties the coherent
Industry Polarization-maintaining (PM) fiber is a special type of single-mode fiber designed by inserting materials with different thermal expansion coefficients into the cladding, which applies
Industry Abstract: Stress-induced birefringence in single mode polarization maintaining optical fibers has been investigated using the finite element method. The modal birefringence caused by external forces in
Industry Abstract: Two conventional errors in the stress-induced birefringence (SIB) of polarization-maintaining fibers (PMFs) are revealed and corrected. The first issue refers to the fundamental expression and its
Industry Three stress effects on the state of polarization in high birefringent polarization-maintaining fibers are reviewed. The stresses induced in PM fibers by the different thermal expansion coefficients
Industry Polarization-maintaining fibers (PMFs) with intrinsic highly stress-induced birefringence (SIB) are widely employed in interferometric fiber-optic gyroscopes (IFOGs).
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