首页> 外文期刊>Journal of Optics >Coupling of a laser diode to single mode circular core graded index fiber via parabolic microlens on the fiber tip and identification of the suitable refractive index profile with consideration for possible misalignments
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Coupling of a laser diode to single mode circular core graded index fiber via parabolic microlens on the fiber tip and identification of the suitable refractive index profile with consideration for possible misalignments

机译:通过光纤尖端上的抛物线形微透镜将激光二极管耦合到单模圆形纤芯渐变折射率光纤,并考虑可能的未对准情况,确定合适的折射率分布

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摘要

We present a theoretical investigation of coupling optics involving a laser diode and circular core graded index single mode fiber via a parabolic microlens on the fiber tip to predict the nature of suitable refractive index profile for the first time in connection with optimum coupling. The study is carried out in absence and presence of possible transverse and angular misalignments. By employing Gaussian field distributions for both the source and the fiber and also ABCD matrix for parabolic microlens under paraxial approximation, we formulate analytical expressions for the concerned coupling efficiencies. The investigations are performed for two different light-emitting wavelengths of 1.3 μm and 1.5 μm for such fibers with different refractive index profile exponents. Further, it is observed that out of the studied refractive index profiles, triangular index profile having the dispersion-shifted merit comes out to be the most suitable profile to couple laser diode to such abovementioned fiber for two wavelengths of practical interest. The analysis should find use in ongoing investigations for optimum launch optics for the design of parabolic microlens either directly on the circular core graded index single mode fiber tip or such fiber attached to single mode fiber to achieve long working distance.
机译:我们对耦合光学器件进行了理论研究,该耦合光学器件通过光纤尖端上的抛物线形微透镜,涉及激光二极管和圆形纤芯渐变折射率单模光纤,以首次预测与最佳耦合有关的合适折射率分布的性质。该研究是在不存在和存在可能的横向和角度错位的情况下进行的。通过使用高斯场分布的源和光纤,以及抛物线微透镜的ABCD矩阵,在近轴近似下,我们为相关的耦合效率制定了解析表达式。对于具有不同折射率分布指数的此类光纤,针对1.3μm和1.5μm的两种不同的发光波长进行了研究。此外,观察到,在所研究的折射率分布图中,具有色散偏移的优点的三角折射率分布成为最实用的将激光二极管耦合至上述光纤的两个实用波长的分布。该分析应该在正在进行的研究中找到用于抛物线微透镜设计的最佳发射光学器件的方法,该抛物线微透镜可以直接在圆形纤芯渐变折射率单模光纤尖端上,也可以在与单模光纤相连的光纤上实现长工作距离。

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