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Slotting effect in designing circular edge bow-tie nano antenna for energy harvesting

机译:圆形边缘领结纳米天线设计中的缝隙效应

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Recent years has observed a remarkable progress in the field of energy harvesting via nano antenna which is nowday's most challenging aspects to reduce the excessive use of fossil fuel. This paper presents a circular edged bow-tie shaped nano antenna used for solar energy harvesting. The performance of the designed nano antenna has been investigated without slot, and also with single and double slots. An optimum performance comparison of the designed nano-antenna with different slot structure is studied via FDTD (Finite difference time domain) method to generate electricity from the radiated maximum solar and earth energy. The results demonstrate that the bow-tie nano antenna having double slot in the circular edge provides better electric field than nano-antenna with single slot or without slot. Moreover, highly localized electric fields are found in the gap between bow-tie tips through the characterization of surface Plasmon resonance. Compared to the other structures, the double slotted circular edged bow-tie nano antenna provides broader antenna bandwidth. The electric field of the bow-tie antenna can also be improved with the array coupling of more bow-tie elements.
机译:近年来,通过纳米天线的能量收集领域观察到了显着进展,该纳米天线是现在是最具挑战性的方面,以减少化石燃料的过度使用。本文介绍了用于太阳能收割的圆形边缘弓形纳米天线。已经研究了设计的纳米天线的性能而没有槽,也具有单个和双槽。通过FDTD(有限差分时域)方法研究了具有不同槽结构的设计纳米天线的最佳性能比较,从而从辐射的最大太阳能和地球能量产生电力。结果表明,圆形边缘中具有双槽的弓形纳米天线提供比具有单槽或没有槽的纳米天线的电场比纳米天线更好。此外,通过表面等离子体共振表征在弓形领节之间的间隙中找到高度局部电场。与其他结构相比,双开槽圆形边缘弓形纳米天线提供更宽的天线带宽。使用更多弓形连接元件的阵列耦合也可以改善弓形连接天线的电场。

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