阶跃折射率硬塑料包层和梯度折射率二氧化硅多模光纤的平衡模态功率分布测量

Ruichen Tao, Takehiro Hayashi, M. Kagami, S. Kobayashi, Manabu Yasukawa, Hui Yang, D. Robinson, H. Baghsiahi, F. Fernández, David R. Selviah
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引用次数: 7

摘要

测量多模光纤衰减需要一种稳定可重复的光标准源,因为最近在几个国际公司和国家标准组织对这种光纤进行的轮循测量显示,当使用仅在其定义的近场产生的圈通量的光源时,有很大的变化。本文介绍并比较了(i) 2 km和3 km步进折射率多模硬塑料包层光纤(HPCF, SI-MMF)的远场模态功率分布,该光纤芯径为200 μm,孔径为0.37,包层为聚合物;(ii)芯径为50 μm,孔径为0.2的10 m硅级折射率多模光纤(GI-MMF); (ii)近场环形磁通模式转换器(modcon)。采用以850 nm波长为中心、40 nm带宽为10 db的发光二极管(LED)和电荷耦合器件(CCD)相机对远场进行了自由空间测量,并与基于f-theta多元透镜的远场模式(FFP)系统进行了比较。采用不同直径的芯轴及其周围不同匝数的光纤,实现了GI-MMF的平衡模式分布。本文将环角通量定义为多模光纤芯在远场一定立体角范围内辐射出的总光功率的分数。本文计算了从远场质心出发,立体角增大时的电场场效应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Equilibrium modal power distribution measurement of step-index hard plastic cladding and graded-index silica multimode fibers
A stable reproducible optical standard source for measuring multimode optical fiber attenuation is required as recent round robin measurements of such fibers at several international companies and national standards organizations showed significant variation when using a source having only the encircled flux in the near field emerging from it defined. The paper presents and compares the far field modal power distributions for (i) 2 km and 3 km step-index multimode Hard Plastic Cladding Fibers, HPCF, (SI-MMF) with 200 μm silica core diameter, 0.37 numerical aperture (NA) and polymer cladding, (ii) a 10 m silica graded-index multimode fiber (GI-MMF) with 50 μm core diameter and 0.2 NA, and (ii) a near field Encircled Flux Mode Convertor or “modcon”. A free space method for measuring the far field using a Lightemitting diode (LED) centered at 850 nm wavelength with 40 nm 10 dB-bandwidth and a charge-coupled device (CCD) camera is compared with a f-theta multi-element lens based far field pattern (FFP) system. Mandrels of different diameter and different numbers of turns of the fiber around them were used to achieve an equilibrium mode distribution (EMD) for the GI-MMF. The paper defines encircled angular flux (EAF) as the fraction of the total optical power radiating from a multimode optical fiber core within a certain solid angle in the far field. The paper calculates the EAF when the solid angle increases from the far field centroid.
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