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Tapered holey fiber and PBG couplers for optical integration

机译:锥形多孔光纤和PBG耦合器,用于光学集成

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The photonic crystal (PC) coupler and planar photonic band gap (PBG) coupler were theoretically investigated. Also the conventional step-index coupler was investigated for comparison with these couplers. The PC-coupler is a structure formed by the gradual tapering of the photonic-crystal holey fiber and the conventional step-index coupler - by the gradual tapering of the conventional fiber. The planar PBG-coupler is a planar PC waveguide, in which defect region has taper-like geometry. The photonic crystal couplers are characterized by alternation of the material refractive index along the wave propagation direction, i. e. along the optical axis of the taper. In our investigation an effective refractive index model for two-dimensional photonic crystal was used. This model allows to analyze the waveguide structures, which work on the effective index waveguiding in a defect of the photonic crystal. The optical field in photonic crystal couplers, PBG couplers and conventional couplers was investigated. Also losses and mode shape distortion of all types of the couplers were calculated.
机译:理论上研究了光子晶体(PC)耦合器和平面光子带隙(PBG)耦合器。还研究了常规阶跃折射率耦合器,以与这些耦合器进行比较。 PC耦合器是通过光子晶体有孔光纤的逐渐变细和常规阶跃折射率耦合器-通过传统的光纤的逐渐变细而形成的结构。平面PBG耦合器是平面PC波导,其中缺陷区域具有锥形的几何形状。光子晶体耦合器的特征是沿着波传播方向的材料折射率交替变化。 e。沿锥度的光轴。在我们的研究中,使用了二维光子晶体的有效折射率模型。该模型允许分析波导结构,该波导结构在光子晶体缺陷中对有效折射率波导起作用。研究了光子晶体耦合器,PBG耦合器和常规耦合器中的光场。还计算了所有类型耦合器的损耗和模式形状失真。

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