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纳米集成光路中的光源、光波导和光增强

刘 丹 马仁敏 王菲菲 张增星 张振生 张学进 王 笑 白永强 朱 星 戴 伦 章 蓓

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纳米集成光路中的光源、光波导和光增强

刘 丹, 马仁敏, 王菲菲, 张增星, 张振生, 张学进, 王 笑, 白永强, 朱 星, 戴 伦, 章 蓓

The light source, optical waveguide and light enhancement of nano-integrated optical circuit

Liu Dan, Ma Ren-Min, Wang Fei-Fei, Zhang Zeng-Xing, Zhang Zhen-Sheng, Zhang Xue-Jin, Wang Xiao, Bai Yong-Qiang, Zhu Xing, Dai Lun, Zhang Bei
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  • 使用近场光学显微术(scanning near-field optical microscopy, SNOM)研究了ZnO亚微米线端面出射性质,不同空间形貌Ⅱ-Ⅵ族半导体荧光器件光波导特性,二维光子晶体、准晶光子晶体对LED的出射增强作用以及表面等离激元(surface plasmon polariton, SPP)与半导体纳米荧光器件的相互作用,对纳米集成光路中的光源、光波导、光增强三个重要问题做了实验和理论上的分析.研究发现半导体微纳米线端面出射光束的质量与样品的直径有密切关系.通过合理地设计其直径和
    Scanning near-field microscopy (SNOM) was used to investigate the low-dimensional semiconductor fluorescence divices, which can work as micro-nano-light source, nano-optical waveguide and light enhancement component in nano-integrated optical circuit. It was found that the quality of semiconductor wire end emission was mainly determined by the sample radius. By designing the wire radius and topography reasonably, it can be used as the light source and optical waveguide in nano-integrated optical circuit. ZnO tetrapod, comb, and CdS multi-branch nano-ribbon also presented quite good adequacy for optical waveguide application, which can function well in light division, congregation, coupling and filtering. 2-D photonic crystal can enhance the light intensity of GaN based LED by as large as 5.2 times. About 30% fluorescence is confined to the surface of photonic crystal. This conclusion is helpful for the optimization of LED light emission. When the resonance excitation condition is fulfilled, Surface plasmm polaritons (SPP) will be excited at the interface between the semiconductor and the silver thin film, which will bring about strong enhancement of electromagnetic field at the interface. Photonic crystal and SPP can realize light enhancement under low_dimensional and nano-scale conditions. The experimental results show that both of them have the potential application as enhancement components in nano-integrated optical circuit.
    • 基金项目: 国家自然科学基金(批准号:10574002)和国家重点基础研究计划(批准号:2007CB936800)资助的课题.
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  • 文章访问数:  8684
  • PDF下载量:  2408
  • 被引次数: 0
出版历程
  • 收稿日期:  2007-04-21
  • 修回日期:  2007-05-31
  • 刊出日期:  2008-01-15

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