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Polarization-maintaining few mode fiber composed of a central circular-hole and an elliptical-ring core 被引量:10

Polarization-maintaining few mode fiber composed of a central circular-hole and an elliptical-ring core
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摘要 We propose a novel waveguide design of polarization-maintaining few mode fiber(PM-FMF) supporting ≥10non-degenerate modes, utilizing a central circular air hole and a circumjacent elliptical-ring core. The structure endows a new degree of freedom to adjust the birefringence of all the guided modes, including the fundamental polarization mode. Numerical simulations demonstrate that, by optimizing the air hole and elliptical-ring core,a PM-FMF supporting 10 distinctive polarization modes has been achieved, and the effective index difference Δn_(eff) between the adjacent guided modes could be kept larger than 1.32 × 10^(-4) over the whole C +L band. The proposed fiber structure can flexibly tailored to support an even larger number of modes in PM-FMF(14-mode PM-FMF has been demonstrated as an example), which can be readily applicable to a scalable mode division multiplexing system. We propose a novel waveguide design of a polarization-maintaining few mode fiber (PM-FMF) supporting >= 10 non-degenerate modes, utilizing a central circular air hole and a circumjacent elliptical-ring core. The structure endows a new degree of freedom to adjust the birefringence of all the guided modes, including the fundamental polarization mode. Numerical simulations demonstrate that, by optimizing the air hole and elliptical-ring core, a PM-FMF supporting 10 distinctive polarization modes has been achieved, and the effective index difference Delta(neff) between the adjacent guided modes could be kept larger than 1.32 x 10(-4) over the whole C + L band. The proposed fiber structure can be flexibly tailored to support an even larger number of modes in PM-FMF (14-mode PM-FMF has been demonstrated as an example), which can be readily applicable to a scalable mode division multiplexing system. (C) 2017 Chinese Laser Press
出处 《Photonics Research》 SCIE EI 2017年第3期261-266,共6页 光子学研究(英文版)
基金 National Natural Science Foundation of China(NSFC)(61331010,61205063) 863 High Technology plan(2015AA016904) Program for New Century Excellent Talents in University(NCET)(NCET-13-0235)
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