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An infrared energy harvesting device using planar cross bowtie nanoantenna arrays and diode-less rectification based on electron field emission

机译:一种基于电子场发射的平面十字弓纳米纳米阵列的红外能量收集装置和二极管整流

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摘要

In this paper, we present a rectification process through electron emission from sharp tips under a high electric field of 10~9-10~(10) V/m based on the Fowler-Nordheim theory. A large planar array of 10~4-10~5 nanoantennas is proposed to achieve the required electric field for electron emission in the nanoantenna gap. Spatial coherence of the incident wave is a prohibitive issue in using large antenna arrays, and it is overcome by choosing proper size for the array. The design starts with a single-element nanoantenna, for which, five different types are considered, namely dipole, spiral, cross bowtie, sinuses and square spiral. Full-wave simulations show that cross bowtie has the highest field enhancement. Moreover, two array configurations, i.e. series and parallel feed networks, are considered and their field enhancement are compared. Moreover, field enhancement in large array configurations is predicted using proposed equations based on curve fitting.
机译:本文基于Fowler-Nordheim理论,提出了一种在10~9-10~(10)V/m强电场下尖尖电子发射的整流过程。提出了一种由10~4-10~5纳米天线组成的大型平面阵列,以实现纳米天线间隙中电子发射所需的电场。在使用大型天线阵列时,入射波的空间相干性是一个令人望而却步的问题,通过选择合适的阵列尺寸可以克服这一问题。该设计从单元素纳米天线开始,考虑了五种不同类型的天线,即偶极子天线、螺旋天线、交叉蝴蝶结天线、正弦天线和方螺旋天线。全波模拟表明,交叉领结具有最高的场增强效果。此外,考虑了两种阵列结构,即串联和并联馈电网络,并对它们的场增强进行了比较。此外,利用基于曲线拟合的方程预测了大阵列结构中的场增强。

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