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Optical characterization of Jerusalem cross-shaped nanoaperture antenna arrays

机译:耶路撒冷十字形纳米孔径天线阵列的光学表征

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Recent advances in nanofabrication and computational electromagnetic design techniques have enabled the realization of metallic nanostructures in different shapes and sizes with adjustable resonance frequencies. To date, many metamaterial designs in various geometries with the used of different materials have been presented for the applications of surface plasmons, cloaking, biosensing, and frequency selective surfaces. Surface plasmons which are collective electron oscillations on metal surfaces ensure that plasmonic nanoantennas can be used in many applications like biosensing at infrared (IR) and visible regions. The nanostructure that we introduce has a unit cell that consists of Jerusalem cross-shaped nanoaperture on a gold layer, which is standing on suspended SiN_x, Si or glass membranes. The proposed nanoaperture antenna array has a regular and stable spectral response. In this study, we present sensitivity of the resonance characteristics of Jerusalem cross-shaped nanoaperture antenna arrays to the changes in substrate parameters and metal thickness. We demonstrate that resonance frequency values can be adjusted by changing the thicknesses and types of the dielectric substrate and the metallic layer. Numerical calculations on spectral response of the nanoantenna array are performed by using Finite Difference Time Domain (FDTD) method. The results of the simulations specify that resonance frequencies, the reflectance and transmittance values at resonances, and the band gap vary by the change of substrate parameters and metal thicknesses. These variations is a sign of that the proposed nanoantenna can be employed for sensing applications.
机译:纳米制造和计算电磁设计技术的最新进展使得能够实现具有可调节谐振频率的不同形状和尺寸的金属纳米结构。迄今为止,已经提出了多种几何形状,使用不同材料的超材料设计,以用于表面等离子体激元,隐身,生物传感和频率选择性表面的应用。表面等离激元是金属表面上的集体电子振荡,可确保等离激元纳米天线可用于许多应用,例如红外(IR)和可见光区域的生物传感。我们介绍的纳米结构具有一个晶胞,该晶胞由位于金层上的耶路撒冷十字形纳米孔组成,该纳米孔位于悬浮的SiN_x,Si或玻璃膜上。所提出的纳米孔径天线阵列具有规则且稳定的频谱响应。在这项研究中,我们介绍了耶路撒冷十字形纳米孔天线阵列的谐振特性对衬底参数和金属厚度的变化的敏感性。我们证明了可以通过改变介电基片和金属层的厚度和类型来调节谐振频率值。使用有限时域(FDTD)方法对纳米天线阵列的光谱响应进行了数值计算。仿真结果表明,谐振频率,谐振处的反射率和透射率值以及带隙随衬底参数和金属厚度的变化而变化。这些变化表明所提出的纳米天线可用于传感应用。

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