Novel multiband polarization beam splitter based on a dual-core transversally chirped microstructured optical fiber

E. Reyes-Vera, J. Úsuga-Restrepo, F. Gomez, N. Gómez-Cardona
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引用次数: 4

Abstract

A novel compact and multiband polarization beam splitter based on a dual-core transversally chirped microstructured optical fiber is proposed and analyzed, using finite element method. The results show that the ≈2.9 mm-long polarization splitter can reach an extinction ratio lower than -20 dB in two bands at 1140 nm and 1556 nm. The bandwidths of both bands are 11.7 nm and 47.2 nm respectively. This work analyzes the operation of the device when it is subjected to curvature, finding that it is possible to tune the operating bands. Numerical calculation indicates that this novel structure may find application in telecommunications, because it is capable of working at different wavelength ranges.
基于双核横向啁啾微结构光纤的新型多波段偏振分束器
提出了一种新型的基于双核横向啁啾微结构光纤的小型多波段偏振分束器,并用有限元方法对其进行了分析。结果表明,在1140 nm和1556 nm两个波段,≈2.9 mm长的偏振分光器的消光比均低于-20 dB。两个波段的带宽分别为11.7 nm和47.2 nm。这项工作分析了设备在受到曲率时的操作,发现可以调整操作波段。数值计算表明,这种新型结构可以在不同的波长范围内工作,因此可以在电信领域得到应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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