Nanocrescent antenna as a transceiver for optical communication systems

I. Hashem, N. Rafat, E. Soliman
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引用次数: 8

Abstract

A novel Metal Dielectric Metal (MDM) nanocrescent antenna is presented in this paper. It is formed by locating a gold circular patch, on the top of a circular aperture etched within a 30 nm gold plate. The vertical spacing between the two gold layers is filled with Al2O3. The centers of both aperture and patch are not on top of each other, resulting in a crescent-shaped nantenna. This nantenna can be fed by a nanostrip line connected to the patch. The proposed nantenna can be tuned to operate at any wavelength of interest by optimizing its geometrical parameters. It offers a relative electric field intensity enhancement of 780 with a FWHM of 960 nm centered around 1550 nm, which is equivalent to more than 61% fractional bandwidth compared to 35% of the conventional dipoles and bowties. Analysis of the proposed nanoantenna is performed using two well-known full-wave electromagnetic solvers. Very good agreement between the two solvers is achieved. A geometrical parametric study is presented, which illustrates the impact of varying different nantenna dimensions on its spectral response. The sensitivity of the response to the used metal type is investigated. The radiation properties of the proposed antenna as a transmitter has been also studied.
纳米月牙天线作为光通信系统的收发器
提出了一种新型的金属介质金属(MDM)纳米月牙天线。它是通过定位一个金圆形补丁,在一个30纳米的金片内蚀刻的圆形孔径的顶部形成的。两个金层之间的垂直间距被Al2O3填充。孔径和贴片的中心不在彼此的顶部,形成月牙形的纳米天线。这种纳米天线可以通过连接到贴片上的纳米带线来馈电。所提出的纳米天线可以通过优化其几何参数调谐到任何感兴趣的波长。它提供了780的相对电场强度增强,以1550 nm为中心的FWHM为960 nm,相当于61%的分数带宽,而传统的偶极子和蝴蝶结的分数带宽为35%。利用两种著名的全波电磁求解器对所提出的纳米天线进行了分析。两个解算器之间取得了很好的一致性。提出了一种几何参数研究,说明了不同的天线尺寸对其光谱响应的影响。研究了响应对所用金属类型的灵敏度。本文还对天线作为发射机的辐射特性进行了研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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