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System investigations of few-mode erbium-doped fiber amplifier (FM-EDFA) for vortex mode amplifications

机译:用于涡旋模式放大的少数模式掺铒光纤放大器(FM-EDFA)的系统研究

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摘要

This paper describes the system performance of mode division multiplexing applications. The mode of amplification involved a ring profile-based multi-mode erbium-doped fiber amplifier with minimum support of 10 vortex spatial modes. The vortex modes are configured and generated by the vortex lens whose input is excited by a spatial laser source. The property of vortex modes can be processed with the linear combination of LP modes. The phase distribution of vortex modes has been twisted and the results achieved were spiral propagation in nature. Similar to the orbital angular momentum modes, the vortex mode is also part of the same group and offers minimal discrepancy among the higher-order modes. Following this approach, the proposed system promises efficient propagation of vortex modes at a higher data rate with minimum crosstalk and uniform gain distributions. The generated modes were classified as LP01, LP11, LP21, LP31, LP41, LP12, LP13, LP14, LP02, LP03 and their equivalent vortex modes were also investigated.
机译:本文介绍了模式分割多路复用应用的系统性能。放大方式涉及基于环形型材的多模掺铒光纤放大器,其最小支撑为10涡旋空间模式。涡流模式由涡流镜头配置和生成,涡流镜头,其输入由空间激光源激发。涡旋模式的性能可以用LP模式的线性组合处理。涡旋模式的相位分布已扭曲,实现的结果是自然界的螺旋繁殖。类似于轨道角动量模式,涡流模式也是同一组的一部分,并且在高阶模式之间提供最小的差异。在这种方法之后,所提出的系统承诺以更高的数据速率高效地传播涡流模式,具有最小串扰和均匀增益分布。还研究了所生成的模式作为LP01,LP11,LP21,LP31,LP41,LP12,LP13,LP14,LP02,LP03及其等效涡旋模式。

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