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Numerical optimization design for waveguide bends with low-loss and widebandwidth in two-dimensional photonic crystal slabs

机译:二维光子晶体板中低损耗和宽带宽度的波导弯曲的数值优化设计

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摘要

In this paper, we demonstrate some optimization designs for waveguide bends in twodimensional photonic crystal slabs based on the effective index approximation. Four different types of waveguide bends with low-loss and wide-bandwidth are designed, which involve 60 degrees, Z-shaped, Y-shaped and 120 degrees waveguide bends in the two-dimensional triangular lattice photonic crystals. In all numerical experiments, the electromagnetic fields in the photonic crystal slab waveguides are solved by the finite element method in COMSOL software. Several strategies are applied to design slab waveguide bends with low-loss and wide-bandwidth, for example, adding some elliptical air-holes near the corner or adjusting the radii of some air-holes. For four optimized structures, the transmission efficiencies at 1550 nm are all more than 92%. As we show, this is achieved over a -0.915 dB bandwidth of more than 65 nm in all waveguide bends. The numerical results indicate that the design scheme we applied to optimize waveguide bends in photonic crystal slabs is simple and efficient, which can provide some useful guidance for further three-dimensional design.
机译:在本文中,我们基于有效折射率近似展示了用于双模光子晶板中的波导弯曲的一些优化设计。设计了具有低损耗和宽带宽的四种不同类型的波导弯曲,其涉及60度,Z形,Y形和120度波导在二维三角形晶格光子晶体中弯曲。在所有数值实验中,通过COMSOL软件中的有限元方法解决了光子晶体板波导的电磁场。使用几种策略来设计具有低损耗和宽带宽的平板波导弯曲,例如,在角落附近添加一些椭圆空气孔或调节一些气孔的半径。对于四种优化的结构,1550nm的传输效率均超过92%。正如我们所示,在所有波导弯曲中,这在-0.915dB的带宽超过65nm的情况下实现。数值结果表明,我们应用于优化光子晶板中的波导弯曲的设计方案简单且有效,这可以为进一步的三维设计提供一些有用的指导。

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