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Efficient Coupling Between Photonic and Dielectric-Loaded Surface Plasmon Polariton Waveguides With the Same Core Material

机译:具有相同芯材的光子和电介质表面等离激元极化波导管之间的高效耦合

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摘要

We theoretically investigate how to efficiently couple a photonic waveguide to a dielectric-loaded surface plasmon polariton (DLSPP) waveguide when they are based on a common core material. The DLSPP waveguide is tapered and butt coupled to the photonic waveguide. First, we propose the use of a dielectric with a higher refractive index than the dielectrics of previous DLSPP waveguides. The photonic and DLSPP waveguides are designed to reduce the loss and tapering region length of the coupling, and the tapering region is optimized. We achieve the coupling between the photonic and DLSPP waveguides based on a dielectric of refractive index of 1.57 with a coupling loss of 2.3 dB through a 3-mu m-long coupling region. The coupling loss is further reduced by modifying the DLSPP waveguide into a double-DLSPP ((DLSPP)-L-2) waveguide. The (DLSPP)-L-2 waveguide has an additional low-index dielectric between its high-index dielectric and metal layer. Designed appropriately, the (DLSPP)-L-2 waveguide can be coupled to the photonic waveguide with a coupling loss of 1.1 dB through a 4-mu m-long coupling region. Since the photonic and DLSPP or (DLSPP)-L-2 waveguides investigated in this paper can be simultaneously fabricated, they may constitute an easily realizable hybrid planar lightwave circuit with a relatively low loss.
机译:我们从理论上研究了当光子波导基于共同的核心材料时,如何有效地将光子波导耦合到电介质加载的表面等离激元极化(DLSPP)波导。 DLSPP波导是锥形的,并且对接耦合到光子波导。首先,我们建议使用折射率比以前的DLSPP波导更高的电介质。设计光子波导和DLSPP波导以减少耦合的损耗和锥形区域的长度,并优化锥形区域。我们基于折射率为1.57的电介质,通过3微米长的耦合区域,耦合损耗为2.3 dB,实现了光子和DLSPP波导之间的耦合。通过将DLSPP波导修改为双DLSPP((DLSPP)-L-2)波导,可以进一步降低耦合损耗。 (DLSPP)-L-2波导在其高折射率电介质和金属层之间具有附加的低折射率电介质。经过适当设计,(DLSPP)-L-2波导可以通过4微米长的耦合区域以1.1 dB的耦合损耗耦合到光子波导。由于本文研究的光子和DLSPP或(DLSPP)-L-2波导可以同时制造,因此它们可以构成易于实现的,具有相对较低损耗的混合平面光波电路。

著录项

  • 作者

    Kwon Min-Suk; Lim Hyun-Jun;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 ENG
  • 中图分类
  • 入库时间 2022-08-20 20:22:57

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