Twist effects in multi-mode fibers

L. Palmieri, A. Galtarossa
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引用次数: 3

Abstract

The recent interest in spatial division multiplexing as a tool to increase optical fiber communication link capacity has recently revived the interest in multi-mode optical fibers. Mode coupling within such fibers is a critical aspect of propagation, for it poses a limit to system capacity. In this paper we analyze fiber twist as a possible cause of mode coupling. It is shown that in a twisted fiber the LP modes undergo a rigid rotation proportional to the twist applied to the fiber. This rotation involves both mode power distribution and mode polarization, generalizing the well known polarization rotation (optical activity) that occurs in twisted single mode fibers. The results of this analysis may enable a more accurate modeling of propagation in randomly coupled multi- and few-mode fibers.
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多模纤维中的捻度效应
最近对空间分路复用作为增加光纤通信链路容量的工具的兴趣最近使对多模光纤的兴趣重新恢复。这种光纤中的模式耦合是传播的一个关键方面,因为它对系统容量构成限制。本文分析了光纤捻度作为模耦合的可能原因。结果表明,在扭曲纤维中,LP模式经历与施加在纤维上的捻度成比例的刚性旋转。这种旋转涉及模式功率分布和模式偏振,推广了众所周知的发生在扭曲单模光纤中的偏振旋转(光学活性)。这一分析结果可以使在随机耦合的多模和少模光纤中传输的建模更加精确。
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