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Design of optical coupling systems between two-dimensional quasi-stadium laser diodes and single-mode optical fibers

机译:二维准场激光二极管与单模光纤之间的光耦合系统设计

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摘要

Optical coupling systems between a two-dimensional quasi-stadium laser diode and single-mode optical fibers using gradient-index rod lenses are designed for both stable and unstable laser resonators for the first time. A novel numerical approach using a combination of the extended Fox-Li calculation method and Gaussian beam transformations is proposed. In the case of a stable laser resonator, two kinds of beam propagation modes appear, namely the axis mode, in which an optical beam propagates along the cavity axis, and the ring mode, in which optical beams propagate along the diamond-shaped trajectory. The coupling efficiencies are found to be 54% for the axis mode and 52% for the ring mode. In contrast, an unstable laser resonator exhibits complicated modes, in which several highly directional beams are emitted from the end mirrors. The total coupling efficiency for these output beams is calculated to be 9.6%. The 3-dB tolerances for the lens pitch and alignment angles of the gradient-index rod lenses are also discussed.
机译:首次将二维准场激光二极管和单模光纤之间使用梯度折射率棒状透镜的光学耦合系统设计用于稳定和不稳定的激光谐振器。提出了一种结合扩展的Fox-Li计算方法和高斯光束变换的数值方法。在稳定的激光谐振器的情况下,出现两种光束传播模式,即,其中光束沿着空腔轴线传播的轴模式和其中光束沿着菱形轨迹传播的环形模式。对于轴模式,耦合效率为54%,对于环形模式,耦合效率为52%。相反,不稳定的激光谐振器表现出复杂的模式,其中从端镜发射出几个高度定向的光束。这些输出光束的总耦合效率经计算为9.6%。还讨论了梯度折射率棒状透镜的透镜间距和对准角的3 dB公差。

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