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Plasmonic LED device

机译:等离子LED装置

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摘要

Plasmonic nanostructures are known to influence the emission of near-by emitters. They can enhance the absorption and modify the external quantum efficiency of the coupled system. To evaluate the possibility of using plasmonics to enhance the light emission of a phosphor-converted LED device and create an efficient directional light source, regular arrays of aluminium nanoparticles covered with a red dye layer are investigated. In arrays of aluminum nanocylinders with a diameter of ca 140 nm combined with a thin (650 run) layer of luminescent material, very narrow resonances have been observed, which lead to large enhancement factors of up to 70 and 20 for excitation with a directional blue laser source and a lambertian LED respectively, in a small spectral range for particular angles. The measured resonances agree very well with finite-difference time-domain numerical simulations. These changes in the angular emission profile of the red dye as well as the spectral shape of its emission can help to optimize the efficacy of phosphor-converted LED modules and increase the amount of useable light in a certain angular cone. Using Fourier microscopy, large modifications of the angular emission profile as well as spectral shaping are observed for these plasmonic LED devices if compared to reference samples without plasmonic nanostructures.
机译:已知等离子纳米结构会影响附近发射器的发射。它们可以增强吸收并改变耦合系统的外部量子效率。为了评估使用等离激元来增强磷光体转换的LED器件的发光并创建有效的定向光源的可能性,研究了覆盖有红色染料层的铝纳米颗粒的规则阵列。在直径约140 nm的铝纳米圆柱阵列与发光材料薄层(650行程)结合时,观察到非常窄的共振,这导致定向蓝光激发的增强因子高达70和20。激光光源和朗伯型LED分别在特定角度的小光谱范围内。测得的共振与时域有限差分数值模拟非常吻合。红色染料的角度发射轮廓及其发射的光谱形状的这些变化可以帮助优化磷光体转换的LED模块的效率,并增加某个角度锥中可用的光量。如果与没有等离子纳米结构的参考样品相比,使用傅里叶显微镜观察到这些等离子LED器件的角度发射轮廓以及光谱形状将发生较大的变化。

著录项

  • 来源
    《Photonic crystal materials and devices XI》|2014年|91270N.1-91270N.6|共6页
  • 会议地点 Brussels(BE)
  • 作者单位

    Philips Research, High Tech Campus 04, 5656AE Eindhoven, The Netherlands;

    Philips Research, High Tech Campus 04, 5656AE Eindhoven, The Netherlands;

    Center for Nanophotonics, FOM Institute AMOLF c/o Philips Research , High Tech Campus 04, 5656AE Eindhoven, The Netherlands,Institute of Materials Science of Seville, Av. Americo Vespucio 49, 41092 Sevilla, Spain;

    Center for Nanophotonics, FOM Institute AMOLF c/o Philips Research , High Tech Campus 04, 5656AE Eindhoven, The Netherlands;

    Center for Nanophotonics, FOM Institute AMOLF c/o Philips Research , High Tech Campus 04, 5656AE Eindhoven, The Netherlands,COBRA Research Institute, Eindhoven University of Technology, Eindhoven, The Netherlands;

    Philips Research, High Tech Campus 04, 5656AE Eindhoven, The Netherlands;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Plasmonics; surface plasmon lattice resonance; metal nanoparticles; phosphors; LED; spectral shaping; angular emission profile;

    机译:等离子表面等离激元晶格共振;金属纳米颗粒;荧光粉发光二极管;频谱整形角发射轮廓;
  • 入库时间 2022-08-26 13:45:03

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