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Performance analysis of a modal converter based on an asymmetric dual-core photonic crystal fiber

机译:基于非对称双芯光子晶体光纤的模态转换器的性能分析

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In this paper a novel modal converter based on an asymmetric dual-core photonic crystal fiber is proposed and numerically analyzed by using the full-vector finite element method. This converter allows mode conversion between the LP01 and LP11 modes, and the LP01 and LP21 modes. These modes are obtained at 1.55 μm. In addition, it was found that the operating wavelength of this device has a great dependence on the different geometric parameters of the structure, such as the diameter of the holes and the pitch as well. Finally, a compact device that can be used in the O + S + C + L + U bands with efficiency greater than 80% and a total length of 2 mm was obtained. This is a very interesting alternative to fabricate new all-fiber optic devices that could be implemented in mode division multiplexing systems.
机译:本文提出了一种基于非对称双芯光子晶体光纤的新型模态转换器,并采用全矢量有限元方法进行了数值分析。该转换器允许在LP01和LP11模式以及LP01和LP21模式之间进行模式转换。这些模式是在1.55μm下获得的。另外,已经发现,该装置的工作波长极大地依赖于结构的不同几何参数,例如孔的直径和节距。最终,获得了可以在O + S + C + L + U带中使用的紧凑型设备,其效率大于80%,总长度为2 mm。这是制造可以在模式分割多路复用系统中实现的新型全光纤设备的一种非常有趣的选择。

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