El-Toukhy Youssef M, Hussein Mohamed, Hameed Mohamed Farhat O, Heikal A M, Abd-Elrazzak M M, Obayya S S A
Opt Express. 2016 Jul 11;24(14):A1107-22. doi: 10.1364/OE.24.0A1107.
In this paper, a novel design of tapered dipole nanoantenna is introduced and numerically analyzed for energy harvesting applications. The proposed design consists of three steps tapered dipole nanoantenna with rectangular shape. Full systematic analysis is carried out where the antenna impedance, return loss, harvesting efficiency and field confinement are calculated using 3D finite element frequency domain method (3D-FEFD). The structure geometrical parameters are optimized using particle swarm algorithm (PSO) to improve the harvesting efficiency and reduce the return loss at wavelength of 500 nm. A harvesting efficiency of 55.3% is achieved which is higher than that of conventional dipole counterpart by 29%. This enhancement is attributed to the high field confinement in the dipole gap as a result of multiple tips created in the nanoantenna design. Furthermore, the antenna input impedance is tuned to match a wide range of fabricated diode based upon the multi-resonance characteristic of the proposed structure.
本文介绍了一种用于能量收集应用的新型锥形偶极子纳米天线设计,并对其进行了数值分析。所提出的设计由具有矩形形状的三步锥形偶极子纳米天线组成。进行了全面的系统分析,其中使用三维有限元频域方法(3D-FEFD)计算天线阻抗、回波损耗、收集效率和场限制。使用粒子群算法(PSO)对结构几何参数进行优化,以提高收集效率并降低500nm波长处的回波损耗。实现了55.3%的收集效率,比传统偶极子对应物高出29%。这种增强归因于纳米天线设计中产生的多个尖端导致偶极子间隙中的高场限制。此外,基于所提出结构的多共振特性,天线输入阻抗被调谐以匹配各种制造的二极管。