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首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >An analysis of the surface-normal coupling efficiency of a metal grating coupler embedded in a Scotch tape optical waveguide
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An analysis of the surface-normal coupling efficiency of a metal grating coupler embedded in a Scotch tape optical waveguide

机译:嵌在透明胶带光波导中的金属光栅耦合器的表面法向耦合效率分析

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The coupling efficiency at normal incidence of recently demonstrated aluminum grating couplers integrated in flexible Scotch tape waveguides has been analyzed theoretically and experimentally. Finite difference time domain (FDTD) and rigorously coupled wave analysis (RCWA) methods have been used to optimize the dimensions (duty cycle and metal thickness) of Scotch tape-embedded 1D Al gratings for maximum coupling at 635 nm wavelength. Good dimension and tape refractive index tolerances are predicted. FDTD simulations reveal the incident beam width and impinging position (alignment) values that avoid rediffraction and thus maximize the coupling efficiency. A 1D Al diffraction grating integrated into a Scotch tape optical waveguide has been fabricated and characterized. The fabrication process, based on pattern transfer, has been optimized to allow complete Al grating transfer onto the Scotch tape waveguide. A maximum coupling efficiency of 20% for TM-polarized normal incidence has been measured, which is in good agreement with the theoretical predictions. The measured coupling efficiency is further increased up to 28% for TM polarization under oblique incidence. Temperature dependence measurements have been also achieved and related to the simulations results and fabrication procedure. (C) 2016 Elsevier B.V. All rights reserved.
机译:在理论上和实验上已经分析了最近展示的集成在柔性透明胶带波导中的铝光栅耦合器在垂直入射时的耦合效率。有限差分时域(FDTD)和严格耦合波分析(RCWA)方法已用于优化嵌有透明胶带的一维Al光栅的尺寸(占空比和金属厚度),从而在635 nm波长处实现最大耦合。可以预测出良好的尺寸和胶带折射率公差。 FDTD仿真揭示了入射光束宽度和撞击位置(对准)值,可避免再衍射,从而最大程度地提高耦合效率。已经制造并表征了集成到透明胶带光波导中的一维Al衍射光栅。基于图案转移的制造工艺已经过优化,可以将铝光栅完全转移到透明胶带波导上。已测量出TM极化垂直入射的最大耦合效率为20%,与理论预测高度吻合。对于倾斜入射下的TM极化,测得的耦合效率进一步提高到28%。温度相关性测量也已经实现,并且与仿真结果和制造过程有关。 (C)2016 Elsevier B.V.保留所有权利。

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