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Dependence of bending losses on cladding thickness in plastic optical fibers

机译:塑料光纤弯曲损耗与包层厚度的关系

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摘要

Our main goal is to provide a comprehensive explanation of the existing differences in bending losses arising from having step-index multimode plastic optical fibers with different cladding thicknesses and under different types of conditions, namely, the variable bend radius R, the number of fiber turns, or the fiber diameter. For this purpose, both experimental and numerical results of bending losses are presented for different cladding thicknesses and conditions. For the measurements, two cladding thicknesses have been considered: one finite and another infinite. A fiber in air has a finite cladding thickness, and rays are reflected at the cladding-air interface, whereas a fiber covered by oil is equivalent to having an infinite cladding, since the very similar refractive index of oil prevents reflections from occurring at the cladding-oil interface. For the sake of comparison, numerical simulations based on ray tracing have been performed for finite-cladding step-index multimode waveguides. The numerical results reinforce the experimental data, and both the experimental measurements and the computational simulations turn out to be very useful to explain the behavior of refracting and tunneling rays along bent multimode waveguides and along finite-cladding fibers.
机译:我们的主要目标是全面解释由具有不同包层厚度和不同类型条件的阶跃折射率多模塑料光纤导致的弯曲损耗的现有差异,即可变弯曲半径R,光纤匝数,或纤维直径。为此,给出了不同包层厚度和条件下弯曲损耗的实验结果和数值结果。为了进行测量,考虑了两种包层厚度:一个有限的和另一个无限的。空气中的光纤具有有限的包层厚度,光线会在包层与空气的界面处反射,而被油覆盖的光纤等效于具有无限的包层,因为油的折射率非常相似,可以防止在包层发生反射-油接口。为了进行比较,对有限包层阶跃折射率多模波导进行了基于光线跟踪的数值模拟。数值结果加强了实验数据,并且实验测量结果和计算仿真结果都非常有助于解释弯曲多模波导和有限包层光纤上折射和隧穿光线的行为。

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    《Applied optics》 |2003年第6期|共6页
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