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Analysis of mode field diameter and macro bending lossofrectangular Trench-Assisted Fiberprofile for Fiber-To-The-Home Technology

机译:光纤到户技术的矩形沟槽辅助光纤轮廓的模场直径和宏观弯曲损耗分析

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Abstract- In this paper, we have analyzed Rectangular Trench-Assisted Fiber [RTAF] for Mode Field Diameter [MFD] and low macro-bending loss. The modified profile of trench-assisted fibbers consists of central core and outer claddings. In between the cladding introducing deep trench filled by low RI materials. We analyze the effect of core, cladding and trench parameters on bending loss and MFD. We have theoretically studied the effect of different trench parameters on effective mode field diameter, and macro-bending loss of optical fiber by finite element method with a trench-assisted optical fiber model. The results show that all the properties are affected obviously by the trench. The analysis shows that the relative refractive index difference in trench affects the properties of mode field diameter and bending loss in optical fibbers for FTTH applications. Bend insensitive single-mode fibers are attractive for fiber-to-the-home (FTTH) applications because they can lower the installation costs and improve system performance. They can increasing refractive index difference between core and cladding glass while reducing the mode field diameter (MFD), adding alow index trench (Fluorine doped glass ring) , There have been many reports on bend-insensitive optical fibers that employ such techniques as reducing the mode field diameter (MFD) . When talking about trench-assisted optical fiber (TA-F), bend-insensitive optical fiber can be used in FTTH applications. The trench can reduce both macro-bending lossand micro-bending loss. It performs perfectly in following the ITU-T G.652 standard to achieve very low bending loss.Theoretically, an ideal optical fiber used in optical communication system should have these following characteristics: small MFD and low bending loss. Although there have been many discussions about the TA-F, we will study how different parameters of the trench affect properties of optical fiber respectively. The figures shows the bending and MFD properties of the fiber with wavelength.
机译:摘要-在本文中,我们分析了矩形沟槽辅助光纤[RTAF]的模场直径[MFD]和低宏观弯曲损耗。沟槽辅助纤维的修改轮廓由中央纤芯和外包层组成。在覆层之间引入由低RI材料填充的深沟槽。我们分析了纤芯,包层和沟槽参数对弯曲损耗和MFD的影响。我们在理论上研究了不同的沟槽参数对有效模场直径的影响,并通过有限元方法结合沟槽辅助光纤模型研究了光纤的宏观弯曲损耗。结果表明,所有性能都受到沟槽的明显影响。分析表明,沟槽中的相对折射率差异会影响FTTH应用的光纤中模场直径和弯曲损耗的特性。弯曲不敏感的单模光纤对于光纤到户(FTTH)应用很有吸引力,因为它们可以降低安装成本并提高系统性能。它们可以增加纤芯和包层玻璃之间的折射率差,同时减小模场直径(MFD),增加低折射率沟槽(氟掺杂的玻璃环)。关于弯曲不敏感的光纤,已有许多报道采用了降低折射率场的方法。模场直径(MFD)。当谈论沟槽辅助光纤(TA-F)时,弯曲不敏感光纤可用于FTTH应用中。沟槽可以减少宏观弯曲损失和微观弯曲损失。它遵循ITU-T G.652标准以达到非常低的弯曲损耗时表现完美。从理论上讲,光通信系统中使用的理想光纤应具有以下特征:MFD小和弯曲损耗低。尽管关于TA-F的讨论很多,但我们将研究沟槽的不同参数如何分别影响光纤的性能。该图显示了光纤随波长的弯曲和MFD特性。

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    Department of Electronics & Communication Engineering Sreenidhi Institute of Scienceand Technology Hyderabad India vikramp@sreenidhi.edu.in;

    Department of Electronics & Communication Engineering Vaagdevi Engineering College (Vaagdevi Group of Colleges) Warangal India;

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