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首页> 外文期刊>Optics Letters >Ultracompact and broadband polarization beam splitter utilizing the evanescent coupling between a hybrid plasmonic waveguide and a silicon nanowire
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Ultracompact and broadband polarization beam splitter utilizing the evanescent coupling between a hybrid plasmonic waveguide and a silicon nanowire

机译:利用混合等离子体激元波导和硅纳米线之间的e逝耦合的超紧凑宽带偏振分束器

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摘要

An ultracompact polarization beam splitter (PBS) is proposed based on an asymmetrical directional coupler consisting of a silicon hybrid plasmonic waveguide (HPW) and a silicon nanowire. The widths of the two coupling waveguides are chosen so that the phase-matching condition is satisfied for TE polarization only while the phase mismatch is significant for TM polarization. A sharply bent silicon HPW is connected at the thru port to play the role of polarizer by utilizing its polarization-dependent loss. With the present principle, the designed PBS has a footprint as small as only ~1.9 μm × 3.7 μm, which is the shortest PBS reported until now, even when large waveguide dimensions (e.g., the waveguide widths w_(1,2) = ~300 nm and the gap width w_(gap) = ~200 nm) are chosen to simplify the fabrication process. The numerical simulations show that the designed PBS has a very broad band (~120 nm) with an extinction ratio >12 dB and a large fabrication tolerance to allow a waveguide width variation of ±30 nm.
机译:提出了一种基于非对称定向耦合器的超紧凑偏振分束器(PBS),该定向耦合器由硅杂化等离子体波导(HPW)和硅纳米线组成。选择两个耦合波导的宽度,使得仅对于TE偏振满足相位匹配条件,而对于TM偏振而言相位失配很明显。通过端口连接一个急剧弯曲的硅HPW,以利用其偏振相关损耗来起偏振器的作用。按照目前的原理,设计的PBS的占地面积仅为〜1.9μm×3.7μm,这是迄今为止报道的最短的PBS,即使波导尺寸较大(例如,波导宽度w_(1,2)=〜选择300 nm和间隙宽度w_(gap)=〜200 nm)可以简化制造过程。数值模拟表明,所设计的PBS具有非常宽的波段(〜120 nm),消光比> 12 dB,并且制造公差较大,允许波导宽度变化为±30 nm。

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