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首页> 外文期刊>Photonics Journal, IEEE >Ultracompact TM-Pass Silicon Nanophotonic Waveguide Polarizer and Design
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Ultracompact TM-Pass Silicon Nanophotonic Waveguide Polarizer and Design

机译:超紧凑TM-Pass硅纳米光子波导偏振器和设计

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An ultracompact transverse magnetic (TM)-pass polarizer based on silicon nanophotonic waveguides is proposed, which contains two tapered waveguides sandwiching a narrow waveguide section only supporting TM-mode propagation. A full-vectorial eigenmode solver is employed to determine the appropriate cross section of the silicon nanophotonic waveguide. The device is first designed in a 2-D approximate model using a wide-angle beam propagation method, and numerical verification is carried out afterward using a parallel full-vectorial 3-D finite-difference time-domain simulation. Both approaches indicate that the finite thickness of the buried SiO2 layerand the reflection at the substrate play important roles on the extinction ratio of the device. A designed numerical example shows an extinction ratio of ~26 dB for the waveguide polarizer with a length of ~10 ¿m, while the insertion loss for the TM mode is negligible.
机译:提出了一种基于硅纳米光子波导的超紧凑型横向磁偏振器,该偏振器包含两个锥形波导,它们夹着一个狭窄的波导段,仅支持TM模式传播。采用全矢量本征模求解器确定硅纳米光子波导的适当横截面。首先使用广角光束传播方法将器件设计为二维近似模型,然后使用并行全矢量3D有限差分时域仿真进行数值验证。两种方法都表明,SiO2埋层的有限厚度和基板的反射对器件的消光比起着重要的作用。一个设计的数值示例显示,波长为〜10μm的波导偏振片的消光比为〜26 dB,而TM模式的插入损耗可忽略不计。

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