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Analysis of Bending-Induced Degradation of Orbital Angular Momentum Modes in Optical Fibers

机译:光纤中轨道角动量模量的弯曲诱导降解分析

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In this work, bending-induced deterioration of orbital angular momentum (OAM) modes in ring core fiber (RCF), photonic crystal fiber (PCF), and vortex fiber (VF) was theoretically investigated: Bending losses, coupling losses, and intermodal crosstalk at the interface between straight and bent optical fibers were investigated from the modal analysis of those three types of OAM mode fibers. In addition, the degradation of a topological charge number of an OAM mode due to the bending-induced birefringence and horizontal mode asymmetry was also investigated. Our investigation revealed that, in all aspects, the PCF is most robust to bending among the three types of optical fibers, and the most serious bending-induced problem in the VF and the RCF is the degradation of the topological charge number. The allowed minimum bending radii of VF and RCF appeared to be ~15 and ~45 mm, respectively, for the specific structures considered in this work. We expect that the methodology and results of our quantitative analysis on bending-induced degradation of OAM modes will be of great use in the design of OAM mode fibers for practical use.
机译:在这项工作中,从理论上研究了弯曲诱导的环形芯光纤(RCF),光子晶体光纤(PCF)和涡旋光纤(VF)中的轨道角动量(OAM)模式的劣化:弯曲损耗,耦合损耗和模态串扰通过对这三种类型的OAM模光纤的模态分析,研究了直形光纤和弯曲光纤之间的界面处的光纤。此外,还研究了由于弯曲引起的双折射和水平模式不对称性导致的OAM模式的拓扑电荷数的下降。我们的研究表明,在所有方面,PCF在三种类型的光纤中对弯曲的抵抗力最强,而在VF和RCF中最严重的弯曲诱发问题是拓扑电荷数的降低。对于这项工作中考虑的特定结构,VF和RCF的允许最小弯曲半径分别为〜15和〜45 mm。我们希望,对弯曲引起的OAM模降解进行定量分析的方法和结果将在实际使用的OAM模光纤的设计中有很大的用途。

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