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Demonstration of a Stand-alone Cylindrical Fiber Coil for Optical Amplifiers

机译:用于光放大器的独立圆柱形光纤线圈的演示

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The design, fabrication and measurement of a cylindrical fiber coil structure is presented that has applications for compact fiber-optic amplifiers. A multimode fiber is used as a surrogate for a dual clad, rare-earth doped fiber for coil fabrication and optical testing. A ray trace algorithm, written in Python, was used to simulate the behavior of light travelling along the waveguide path. An in-house fabrication method was developed using 3D printed parts designed in SolidWorks and assembled with Arduino-controlled stepper motors for coil winding. Ultraviolet-cured epoxy was used to bind the coils into a rigid cylinder. Bend losses are introduced by the coil, and a measurement of the losses for two coil lengths was obtained experimentally. The measurements confirm that bend losses through a multimode fiber, representative of pump light propagating in a dual-clad rare-earth doped fiber, are relatively wavelength independent over a large spectral range and that higher order modes are extinguished quickly while lower order modes transmit through the windings with relatively low loss.
机译:提出了一种圆柱形光纤线圈结构的设计,制造和测量方法,该结构可用于紧凑型光纤放大器。多模光纤用作双包层稀土掺杂光纤的替代物,用于线圈制造和光学测试。用Python编写的光线跟踪算法用于模拟沿波导路径传播的光的行为。使用SolidWorks中设计的3D打印零件开发了一种内部制造方法,该零件与Arduino控制的步进电机组装在一起用于线圈绕制。使用紫外线固化的环氧树脂将线圈粘合成刚性圆柱体。线圈引入弯曲损耗,并通过实验获得了两个线圈长度的损耗测量值。测量结果证实,通过多模光纤的弯曲损耗代表了在双包层稀土掺杂光纤中传播的泵浦光,在较大的光谱范围内相对波长无关,并且高阶模被快速熄灭,而低阶模通过损耗相对较低的绕组。

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