用于传感应用的等离子体v形凹槽二维阵列

Hyeonsoo Park, Kyookeun Lee, Jeong-Geun Yun, Chulsoo Choi, Hwi Kim, Byoungho Lee
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引用次数: 2

摘要

对二维等离子体v形槽阵列的折射率传感性能进行了数值分析。对结构参数进行了优化,在期望的传感区域(n=1.33)显示出急剧而大的反射率下降。在可见光区,环境折射率的灵敏度为400 nm/RIU, dip的FWHM为~ 5 nm。结果表明,该结构具有品质因子极值和良好的消光比。局域模式在凹槽底部有热点,从而使基于磁场增强的局域传感成为可能。此外,局域模式取决于凹槽的锥度角,而不是开度比。讨论了双v形槽的性能。排列紧密的凹槽阵列具有几乎相同的反射光谱,但存在适度的倾角偏移。除了利用这种结构获得折射率传感外,相干激发产生的磁场热点还可以应用于高度局域化的传感和增强非线性过程。
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Two-dimensional array of plasmonic V-shaped grooves for sensing applications
We numerically analyzed the refractive index sensing performance of the two-dimensional array of plasmonic V-shaped grooves. The structural parameters are optimized to show a sharp and large reflectance dip with desired sensing region (n=1.33). Acquiring the sensitivity of the environmental refractive index as 400 nm/RIU in the visible region, FWHM of the dip is ∼5 nm. It shows that the proposed structure has extreme value of quality factor and good extinction ratio. The localized mode has the hot spot at the bottom of the grooves so that localized sensing based on magnetic field enhancement is possible. Moreover, the localized mode is dependent on the tapered angle of the grooves, not the opening ratio. The performance of the dual V-shaped grooves is also discussed. The array of the closely located grooves has nearly identical reflectance spectra but a moderate amount of dip shift exists. As well as obtaining refractive index sensing by this configuration, magnetic field hot spot generation by coherent excitation can be applied to highly localized sensing and enhancing nonlinear processes.
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