Digital polarization encoding based on orthogonal polarization rotation in a semiconductor optical amplifier

Zhengyong Li, Chongqing Wu, S. Yang, C. Tian, R. Y. Zhang
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Abstract

We investigate the polarization-dependent mode gains and polarization rotation (PR) of the semiconductor optical amplifier in pump-probe scheme, and find that the relationship between polarization rotation (PR) and mode gains keeps well under different pump power. Thus we can simply obtain the PR angle by measurement of the mode gains. Choosing suitable injected current we realize the orthogonal polarization rotation by pump laser with power of ~3.5 mW. Then we propose a novel digital polarization encoding scheme and perform it well in a 10-km fiber transmission system with data rate at 2.5 G-bit/s, which is promising to promote the optical power-equalized encoding communications.
半导体光放大器中基于正交偏振旋转的数字偏振编码
研究了泵浦-探针方案中半导体光放大器的偏振相关模式增益和偏振旋转(PR),发现在不同的泵浦功率下,偏振旋转(PR)和模式增益之间的关系保持良好。因此,我们可以简单地通过测量模态增益来获得PR角。选择合适的注入电流,用功率为~3.5 mW的泵浦激光器实现正交偏振旋转。在此基础上,提出了一种新的数字极化编码方案,并在数据速率为2.5 g /s的10km光纤传输系统中取得了良好的效果,有望促进光功率均衡编码通信的发展。
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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