A Simplified Coupling Power Model of Single Mode Fiber Fusion at Coupling Length

Saktioto, J. Ali, M. Fadhali
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Abstract

Fabrications of single mode fiber coupling by heating fibers on a flame are very common and popular. However, controlling the output power of fiber coupling process is neither easy nor similar. Power losses occur at the coupling length due to geometrical change of the fibers after fusion. The power losses will affect sensor devices such as an optical switch. This paper proposes power splitting into the second fiber junction in terms of a new model by deriving the coupling power with two conditions of refractive index changes. First is the change in the vertical part and second is the change in the vertical and horizontal part simultaneously. Both conditions are studied by perpendicular and parallel directions. The model is examined where power absorption and reflection are accumulated by power losses. Simulation result shows that the power increases by superposition wave. These power losses are due to radiation out of the cladding and fiber heating.
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单模光纤融合在耦合长度上的简化耦合功率模型
通过在火焰上加热纤维来制造单模光纤耦合是非常普遍和流行的。然而,控制光纤耦合过程的输出功率既不容易,也不相似。由于融合后光纤的几何变化,功率损耗发生在耦合长度处。功率损耗将影响传感器设备,如光开关。本文通过推导两种折射率变化条件下的耦合功率,提出了一种新的光纤第二结功率分割模型。首先是垂直部分的变化,其次是垂直和水平部分同时变化。分别从垂直和平行两个方向研究了这两种情况。在功率损耗累加的情况下,对模型进行了检验。仿真结果表明,叠加波增加了功率。这些功率损失是由于包层辐射和光纤加热造成的。
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