首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Strong power absorption in a new microstructured holey fiber-based plasmonic sensor
【24h】

Strong power absorption in a new microstructured holey fiber-based plasmonic sensor

机译:新型微结构多孔光纤等离子体传感器的强大功率吸收

获取原文
获取原文并翻译 | 示例
           

摘要

The propagation characteristics in a new microstructured single-core holey fiber-based plasmonic sensor are investigated using a finite element method. The fiber is specifically designed for sensing analytes with small refractive index values, like water solutions. The proposed structure is made by a silica core with a small air hole in the center, surrounded by six air holes placed at the vertices of a hexagon and four or five smaller air holes between some large air holes, and further enclosed by gold and water layers. The presence of the four small holes impedes the resonant interaction (at 0.623 μm) between one of the pair of twofold degenerate core modes with a plasmon mode and introduces two new core modes in resonance with the plasmon modes when the phase matching (at 0.618 μm) or loss matching (at 0.632 μm) conditions are satisfied. The addition of such four small air holes to a previously studied sensor structure produces a stronger transmission loss (1266.8 dB∕cm) of a core guided mode at the resonant coupling due to efficient interaction with a plasmon mode near the loss matching point in the red part of the visible spectrum (0.632 μm). The advantages of the configuration with five small air holes are a better spectral resolution, a smaller value of the FWHM parameter, a higher value of the signal-to-noise ratio, and a higher amplitude sensitivity. Our sensors are capable of detecting large ranges of refractive indices with accuracy of 1.0 × 10~(?5) refractive index units.
机译:使用有限元方法研究了一种新型的微结构单芯多孔光纤基等离子体传感器的传播特性。光纤专门设计用于检测折射率较小的分析物,例如水溶液。所提出的结构是由硅芯制成的,硅芯的中心有一个小气孔,周围有六个位于六边形顶点的气孔,而在一些大气孔之间有四个或五个小气孔,并进一步被金和水包围层。四个小孔的存在会阻碍一对简并等离子体模式的一对简并核心模式之一之间的共振相互作用(在0.623μm处),并且当相位匹配(在0.618μm时)会引入两个新的与共振子模式共振的核心模式)或损耗匹配(0.632μm)的条件得到满足。在先前研究的传感器结构中增加这四个小气孔,由于在红色中的损耗匹配点附近与等离激元模式有效相互作用,在共振耦合时产生了核心引导模式的较强传输损耗(1266.8 dB ∕ cm)。可见光谱的一部分(0.632μm)。具有五个小气孔的配置的优点是更好的光谱分辨率,更小的FWHM参数值,更高的信噪比值和更高的幅度灵敏度。我们的传感器能​​够以1.0×10〜(?5)折射率单位的精度检测大范围的折射率。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号