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On the performance of Tamm-plasmon and surface-plasmon hybrid-mode refractive-index sensor in metallo-dielectric heterostructure configuration

机译:Tamm-等离激元和表面-等离激元混合模式折射率传感器在金属介电异质结构中的性能研究

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摘要

Hybrid modes formed as a consequence of coupling between Tamm-plasmon polariton (TPP) mode and surface plasmon polariton (SPP) mode in a metallo-dielectric heterostructure geometry exhibit interesting dispersive features which can be employed for realizing highly sensitive and accurate surface-plasmon-resonance (SPR) sensor. The transverse magnetically (TM) polarized TPP modes (TM-TPP), formed at the interface of distributed-Bragg reflector (DBR) and metal, are strongly dispersive as compared to SPP modes at optical frequencies that forms the basis of narrow interaction bandwidth which, in turn, results in improved accuracy of sensing. By deploying a nano/micro-fabrication compatible TiO_2/SiO_2-based DBR architecture in combination with different plasmon-active metals such as gold (Au), silver (Ag) and aluminum (Al), we propose a TM-TPP and SPP hybrid-mode sensor which exhibit high sensitivity ≥ 900 nm/RIU for analyte refractive indices varying between 1.330 and 1.345. The investigation also revealed that the hybrid-mode sensor is most accurate in case of Al-based configuration amongst Au, Ag and Al which is primarily due to weaker dispersion characteristics exhibited by Al at visible frequencies. Since, the dispersive behavior of TM-TPP modes could be tailored appropriately in any spectral band, the sensing configuration could be immensely useful for designing sensors at those wavelength where optical sources are readily available.
机译:金属介电异质结构几何中Tamm等离子体激元(TPP)模式和表面等离子体激元(SPP)模式耦合形成的混合模式表现出有趣的色散特性,可用于实现高度敏感和精确的表面等离子体激元。共振(SPR)传感器。与SPP模式相比,在分布式布拉格反射器(DBR)和金属的界面处形成的横向磁(TM)极化TPP模式(TM-TPP)在色频上具有很强的色散,形成了窄相互作用带宽的基础,从而提高了传感精度。通过部署与纳米/微加工兼容的基于TiO_2 / SiO_2的DBR结构与不同的等离子活性金属(例如金(Au),银(Ag)和铝(Al))相结合,我们提出了TM-TPP和SPP混合体模式传感器,对于分析物的折射率在1.330和1.345之间变化,显示出≥900 nm / RIU的高灵敏度。研究还表明,在Au,Ag和Al中基于Al的配置中,混合模式传感器最准确,这主要是由于Al在可见频率下表现出的较弱色散特性。由于可以在任何光谱带中适当地调整TM-TPP模式的色散行为,因此传感配置对于在容易获得光源的那些波长处设计传感器可能非常有用。

著录项

  • 来源
    《Sensors and Actuators》 |2015年第1期|443-448|共6页
  • 作者单位

    School of Physical Sciences, National Institute of Science Education and Research, Bhubaneswar 751005, India;

    Department of Physics, Kalindi College, University of Delhi, New Delhi 110008, India;

    Nanophotonics and Plasmonics laboratory, School of Basic Sciences, Indian Institute of Technology Bhubaneswar, Bhubaneswar 751007, India;

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

    Photonic bandgap; Surface plasmons; Dispersion;

    机译:光子带隙;表面等离子体激元;分散;

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