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基于自谐振仿表面等离子体结构的远程太赫兹无线能量传输

Remote terahertz wireless power transfer with self-resonating spoof plasmonic structures.

作者信息

Cheng Shu-Ling, Wu Hong-Wei, Sun Wen-Jun, Zhou Nong, Peng Cheng-Yao, Sheng Zong-Qiang, Zhang Wen-Bing

出版信息

Opt Express. 2023 Sep 25;31(20):32900-32908. doi: 10.1364/OE.492279.

Abstract

In this paper, we use a pair of self-resonating subwavelength spoof plasmonic structures to achieve remote non-radiative terahertz wireless power transfer, while nearly without affecting the electromagnetic environment of free space around the structure. The resonating frequency and quality factor of the magnetic dipole mode supported by the spoof plasmonic structures can be freely tuned by tailoring the geometric structure. By putting the weak source and detector into the self-resonating structures, we can find that the effective non-radiative terahertz power transferring distance can reach several hundred times the radius of the structures. Finally, we also demonstrate the efficient wireless power transfer capability for the multi-target receiving system. These results may provide a novel approach to the design of non-radiative terahertz wireless power transfer and communications.

摘要

在本文中,我们使用一对自谐振亚波长类表面等离子体结构来实现远程非辐射太赫兹无线功率传输,同时几乎不影响结构周围自由空间的电磁环境。通过定制几何结构,可以自由调节类表面等离子体结构所支持的磁偶极子模式的谐振频率和品质因数。将弱源和探测器置于自谐振结构中,我们发现有效的非辐射太赫兹功率传输距离可达结构半径的数百倍。最后,我们还展示了多目标接收系统的高效无线功率传输能力。这些结果可能为非辐射太赫兹无线功率传输与通信的设计提供一种新方法。

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