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Increasing polarization stability of anisotropic single-mode quartz light guides with elliptical stress cladding
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Дукельский К.В., Ероньян М.А., Мешковский И.К., Комаров А.В., Кулеш А.Ю., Ромашова Е.И., Тер-Нерсесянц Е.В. Повышение поляризационной устойчивости анизотропных одномодовых кварцевых световодов с эллиптичной напрягающей оболочкой // Оптический журнал. 2016. Т. 83. № 12. С. 92–94.
Dukelskiy K.V., Eroniyan M.A., Meshkovskiy I.K., Komarov A.V., Kulesh A.Yu., Romashova E.I., Ter-Nersesyants E.V. Increasing polarization stability of anisotropic single-mode quartz light guides with elliptical stress cladding [in Russian] // Opticheskii Zhurnal. 2016. V. 83. № 12. P. 92–94.
K. V. Dukel’skiĭ, M. A. Eron’yan, K. Meshkovskii, A. V. Komarov, A. Yu. Kulesh, E. I. Romashova, and E. V. Ter-Nersesyants, "Increasing polarization stability of anisotropic single-mode quartz light guides with elliptical stress cladding," Journal of Optical Technology. 83(12), 783-784 (2016). https://doi.org/10.1364/JOT.83.000783
In this paper, we discuss the polarization properties of anisotropic single-mode light guides with boron germanosilicate elliptical stress cladding. It is shown that, for light guides with a diameter of 125 μm, an increase of ellipticity of the cladding from 0.53 to 0.6 does not result in a change in birefringence. This phenomenon is due to the distortion of the correct shape of the ellipse. With that in mind, optimizing the design of the light guide will allow us to decrease the h-parameter to 5×10-6 m−1.
anisotropic single-mode light guide, elliptical cladding, beat length, birefringence, maintenance of radiation polarization
Acknowledgements:The research was supported by the Ministry of Education and Science of the Russian Federation (Minobrnauka) (RFMEFI57815X0109, 14.578.21.0109).
OCIS codes: 060.2420
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