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Electric field enhancement and far-field radiation pattern of the nanoantenna with concentric rings

机译:同心环纳米天线的电场增强和远场辐射方向图

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摘要

The optical antennas have the potential in various applications because of their field enhancement and directivity control. The directivity of a dipole antenna can be improved by directivity-enhanced Raman scattering structure, which is a combination of a dipole antenna and a ring reflector layer on a ground plane. The concentric rings can collect the light into the center hole. Depending upon the geometry of the antenna inside the hole, different electric field enhancements can be achieved. In this paper, we propose to combine the concentric rings with the directivity-enhanced Raman scattering structure in order to study its electric field enhancement and the far-field radiation pattern by finite-difference time-domain simulations. Compared with the structure without the concentric rings over the ground plane, it is found that our proposed structure can obtain stronger electric field enhancements and narrower radiation beams because the gold rings can help to couple the light into the nanoantenna and they also scatter light into the far field and modify the far-field radiation pattern. The designed structures were fabricated and the chemical molecules of thiophenol were attached on the structures for surface-enhanced Raman scattering (SERS) measurements. The measured results show that the structure with concentric rings can have stronger SERS signals. The effects of the dielectric layer thickness in our proposed structure on the near-field enhancements and far-field radiation are also investigated. The proposed structure can be useful for several nanoantenna applications, such as sensing or detecting.
机译:光学天线由于其场增强和方向性控制而在各种应用中具有潜力。偶极天线的方向性可以通过增强方向性的拉曼散射结构来提高,该结构是偶极天线和接地平面上的环形反射层的组合。同心环可以将光收集到中心孔中。根据孔内天线的几何形状,可以实现不同的电场增强。在本文中,我们提出将同心环与方向性增强的拉曼散射结构结合起来,以通过有限差分时域仿真研究其电场增强和远场辐射方向图。与在地平面上没有同心环的结构相比,发现我们提出的结构可以获得更强的电场增强和更窄的辐射束,因为金环可以帮助将光耦合到纳米天线中,并且它们还可以将光散射到纳米天线中。远场并修改远场辐射方向图。制造了设计的结构,并将苯硫酚的化学分子附着在结构上以进行表面增强拉曼散射(SERS)测量。测量结果表明,具有同心环的结构可以具有较强的SERS信号。还研究了我们提出的结构中介电层厚度对近场增强和远场辐射的影响。所提出的结构可用于多种纳米天线应用,例如传感或检测。

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