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The impact of elliptical deformations for optimizing the performance of dual-core fluorine-doped photonic crystal fiber couplers

机译:椭圆形变形对优化双芯掺氟光子晶体光纤耦合器性能的影响

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摘要

In this paper we study the impact of elliptically-deformed features such as cladding air-holes and elliptically-modulated cores, as ingredients for optimizing the coupling characteristics of dual-core fluorine-doped photonic crystal fiber (PCF) couplers. We provide a detailed numerical investigation by using a trial and error approach for optimizing the propagation characteristics of fluorine-doped PCF couplers. Typical characteristics of the newly proposed PCF coupler structure are: wavelength-flattened coupling characteristics between 0.7 μm and 1.6 μm wavelength range, coupling efficiency of 50±1 % from 0.9 μm to 1.6 μm, and a reasonably small coupling length of 1.3 cm. In addition we have elaborately derived the design parameters so that our proposed dual-core PCF coupler exhibits polarization-insensitive characteristics verified by using a full-vectorial beam propagation method. The proposed dual-core PCF can be effectively used as a 3-dB coupler, over a wide wavelength range.
机译:在本文中,我们研究了椭圆形变形特征(如包层气孔和椭圆形调制纤芯)的影响,作为优化双芯掺氟光子晶体光纤(PCF)耦合器耦合特性的要素。我们通过使用试错法来优化掺氟PCF耦合器的传播特性,提供了详细的数值研究。新提出的PCF耦合器结构的典型特性是:波长范围介于0.7μm和1.6μm之间的波长平坦耦合特性,0.9μm至1.6μm的耦合效率为50±1%,以及1.3 cm的相当小的耦合长度。此外,我们精心设计了设计参数,从而使我们提出的双核PCF耦合器具有通过使用全矢量光束传播方法验证的偏振不敏感特性。所提出的双核PCF可以在很宽的波长范围内有效地用作3-dB耦合器。

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