The effect of misalignment on the coupling optics involving laser diode and single-mode triangular index fiber with an upside down tapered hyperbolic microlens on its tip

Q3 Engineering
Mithun Maity, Angshuman Majumdar, Ramkrishna Rakshit, S. Gangopadhyay
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引用次数: 0

Abstract

This article contains theoretical investigation of the performance of the coupler comprising laser diode and mono-mode circular core triangular index fiber (TIF), which contains on its tip an upside down tapered hyperbolic microlens (UDTHM). Here, we take care of probable angular and transverse mismatches. In our derivation, we use the refractive index distribution in the tapering area, the ray equation, and the relation involving refraction by hyperbolic microlens. We report analytical formulation of coupling efficiencies in the presence of specified types of misalignments using a relevant ABCD refraction matrix for a UDTHM in the vertical plane. In the fields of lasers and fibers, we use Gaussian field distribution in our analysis. Our research is based on two widely employed wavelengths, 1.3 µm and 1.5 µm. In this study, we used three TIF with V numbers of 4.380, 3.511, and 1.924, respectively. Little computation is required to execute the prescribed formulations. This study surfaces the sensitivity of the coupler in presence of the aforementioned types of offsets. The found results will prove valuable to manufacturers working in the domain of UDTHM.
错位对激光二极管和单模三角索引光纤耦合光学的影响,该光纤的顶端有一个倒置的锥形双曲微透镜
本文对由激光二极管和单模圆芯三角光纤(TIF)组成的耦合器的性能进行了理论研究,该耦合器的顶端包含一个倒置锥形双曲微透镜(UTDTHM)。在这里,我们考虑到了可能存在的角度和横向不匹配问题。在推导过程中,我们使用了锥形区域的折射率分布、射线方程以及双曲微透镜的折射关系。我们报告了在存在特定类型错位的情况下,使用相关的 ABCD 折射矩阵对垂直面上的 UDTHM 的耦合效率进行分析计算的结果。在激光和光纤领域,我们使用高斯场分布进行分析。我们的研究基于两种广泛使用的波长,即 1.3 µm 和 1.5 µm。在这项研究中,我们使用了三个 TIF,其 V 值分别为 4.380、3.511 和 1.924。执行规定的公式所需的计算量很少。这项研究揭示了耦合器在出现上述类型偏移时的灵敏度。研究结果对 UDTHM 领域的制造商很有价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of Optical Communications
Journal of Optical Communications Engineering-Electrical and Electronic Engineering
CiteScore
2.90
自引率
0.00%
发文量
86
期刊介绍: This is the journal for all scientists working in optical communications. Journal of Optical Communications was the first international publication covering all fields of optical communications with guided waves. It is the aim of the journal to serve all scientists engaged in optical communications as a comprehensive journal tailored to their needs and as a forum for their publications. The journal focuses on the main fields in optical communications
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