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首页> 外文期刊>Nanotechnology >Enhanced coupling of broadband light into amorphous silicon via periodic nanoplasmonic arrays
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Enhanced coupling of broadband light into amorphous silicon via periodic nanoplasmonic arrays

机译:通过周期性纳米载体阵列将宽带光耦合到非晶硅中的耦合

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摘要

Achieving enhanced coupling of solar radiation over the full range of the silicon absorption spectrum up to the bandgap is essential for increased efficiency of solar cells, especially thin film versions. While many designs for enhancing trapping of radiation have been explored, detailed measurements of light scattering inside silicon cells is still lacking. Here, we demonstrate experimentally and computationally that plasmonic-assisted localized and traveling modes can efficiently couple red and infrared radiation into ultrathin amorphous silicon (a-Si) layers Utilizing patterned periodic arrays of aluminum nanostructures on thin a-Si, we perform specular and diffuse reflectivity and transmission measurements over a broad spectrum. Based on these results, we are able to separate parasitic absorption in aluminum plasmonic arrays from enhanced light absorption in the 200 nm thick amorphous silicon layer, as compared to a blank silicon layer. We discover a very efficient near-infrared a-Si absorption mechanism that occurs at the transition from the radiative to evanescent diffractive coupling, analogous to earlier surface-enhanced infrared studies. These results represent a direct demonstration of enhanced radiation coupling into silicon due to large angle scattering and show a path forward to improved ultrathin solar cell efficiency.
机译:实现增强的太阳辐射耦合在整个硅吸收光谱上,直到带隙,对于太阳能电池,尤其是薄膜形式的效率至关重要。虽然已经探索了提高辐射捕获的许多设计,但仍然缺乏硅电池内的光散射的详细测量。在这里,我们实验和计算地证明了等离子体辅助局部和行驶模式可以将红色和红外辐射有效地将红色和红外辐射利用薄A-Si上的铝纳米结构图案化的周期性阵列进行了较好的铝阵列,我们进行镜面和漫射广谱上的反射率和传输测量。基于这些结果,与坯料层相比,我们能够将铝等阵列中的铝等级阵列中的寄生吸收分离在200nm厚的非晶硅层中的增强光吸收。我们发现了一种非常有效的近红外A-Si吸收机制,其发生在从辐射到渐逝衍射耦合的过渡,类似于早期的表面增强的红外研究。这些结果由于大角度散射而直接示范增强辐射耦合到硅中,并显示出提高超太阳能电池效率的路径。

著录项

  • 来源
    《Nanotechnology》 |2018年第38期|共9页
  • 作者单位

    MIT Lincoln Lab Lexington MA 02421 USA;

    MIT Lincoln Lab Lexington MA 02421 USA;

    MIT Lincoln Lab Lexington MA 02421 USA;

    US Army Natick Soldier Res Dev &

    Engn Ctr Opt &

    Electromagnet Mat Team Natick MA 01760 USA;

    US Army Natick Soldier Res Dev &

    Engn Ctr Opt &

    Electromagnet Mat Team Natick MA 01760 USA;

    US Army Natick Soldier Res Dev &

    Engn Ctr Opt &

    Electromagnet Mat Team Natick MA 01760 USA;

    US Mil Acad West Point NY 10996 USA;

    US Army Natick Soldier Res Dev &

    Engn Ctr Opt &

    Electromagnet Mat Team Natick MA 01760 USA;

    US Army Natick Soldier Res Dev &

    Engn Ctr Opt &

    Electromagnet Mat Team Natick MA 01760 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 特种结构材料;
  • 关键词

    amorphous silicon; plasmonics; solar cell;

    机译:非晶硅;血浆;太阳能电池;

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