单模光纤与具有气孔塌锥的光子晶体光纤组成的熔接光纤耦合器的耦合特性

Q3 Engineering
H. Yokota, H. Yashima, Y. Imai, Y. Sasaki
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引用次数: 4

摘要

利用单模光纤和光子晶体光纤形成熔接耦合器是实现光源与光子晶体光纤光耦合的一种解决方案。本文研究了由普通SMF和具有气孔塌缩锥度的PCF组成的熔丝光纤耦合器的耦合特性。采用CO2激光辐照制备了一种空气孔缩锥型SMF-PCF耦合器原型。在1554 nm波长处,SMF与PCF的耦合效率为−6.2 dB。采用简化后的等效耦合模型,通过光束传播分析,从理论上阐明了SMF-PCF耦合器获得高耦合效率的结构。结果表明,适当选择预拉伸或蚀刻的SMF直径和空穴塌陷区长度可以有效地获得高耦合效率,从而获得高的交叉端口消光比和低的过量损耗。我们还证明了获得高耦合效率的预拉伸SMF的直径对空气孔坍塌SMF-PCF耦合器中PCF的空气孔直径与节距比不敏感。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Coupling Characteristics of Fused Optical Fiber Coupler Formed with Single-Mode Fiber and Photonic Crystal Fiber Having Air Hole Collapsed Taper
Fused coupler forming with a single-mode fiber (SMF) and a photonic crystal fiber (PCF) is one of the solutions for optical coupling from a light source to a PCF. In this paper, we presented coupling characteristics of a fused fiber coupler formed with an ordinary SMF and a PCF having air hole collapsed taper. A prototype of SMF-PCF coupler with air hole collapsed taper was fabricated using CO2 laser irradiation. The coupling efficiency from SMF to PCF was −6.2 dB at 1554 nm wavelength in the fabricated coupler. The structure of the SMF-PCF coupler to obtain high coupling efficiency was theoretically clarified by beam propagation analysis using an equivalent model of the coupler with simplification. It was clarified that appropriately choosing the prestretched or etched SMF diameter and the length of air hole collapsed region was effective to obtain high coupling efficiency that was a result of high extinction ratio at cross port and low excess loss. We also demonstrated that the diameter of prestretched SMF to obtain high coupling efficiency was insensitive to the air hole diameter ratio to pitch of the PCF in the air hole collapsed SMF-PCF coupler.
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来源期刊
Advances in Optoelectronics
Advances in Optoelectronics ENGINEERING, ELECTRICAL & ELECTRONIC-
CiteScore
1.30
自引率
0.00%
发文量
0
期刊介绍: Advances in OptoElectronics is a peer-reviewed, open access journal that publishes original research articles as well as review articles in all areas of optoelectronics.
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