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Dual-polarized nanoantenna solar energy collector

机译:双极化纳米天线太阳能收集器

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A linearly-polarized receiving mode nanoantenna is designed for solar energy harvesting. The infrared nanoantenna is used to collect the solar radiation and converting it to electric energy. The proposed nanoantenna is a thin dipole made of gold and printed on a silicon dioxide substrate. The two poles of the dipole have been shaped in a rhombus form. The nanoantenna dipole is able to focus the electromagnetic energy into small localized area at the inner tips. Therefore, a maximum (focused) near field intensity across the gap is achieved. The dimensions of the dipole are optimized for maximum near electric field intensity at a frequency of 28.3 THz. The effect of nanoantenna dipole material on the performance of the solar energy collector has been studied. A Metal Insulator Metal (MIM) diode is integrated with the nanoantenna dipole to rectify the received energy. The radiation efficiency of the solar energy collector with integrated MIM diode has been investigated. A dual-polarized, four arms, rhombus shaped nanoantenna dipole for solar energy harvesting has been introduced, designed and optimized for 28.3 THz applications.
机译:线性极化接收模式纳米天线被设计用于太阳能收集。红外纳米天线用于收集太阳辐射并将其转换为电能。拟议中的纳米天线是由金制成的细偶极子,印刷在二氧化硅衬底上。偶极子的两个极点已做成菱形形状。纳米天线偶极子能够将电磁能集中到内部尖端的小局部区域。因此,实现了跨间隙的最大(聚焦)近场强度。偶极子的尺寸经过优化,可在28.3 THz的频率下获得最大的近电场强度。研究了纳米天线偶极子材料对太阳能收集器性能的影响。金属绝缘体金属(MIM)二极管与纳米天线偶极子集成在一起,以整流接收到的能量。研究了集成有MIM二极管的太阳能集热器的辐射效率。引入,设计和优化了用于28.3 THz应用的双极化,四臂菱形纳米天线偶极子。

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