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题名:
A new surface wave antenna-based spoof surface plasmon mechanism
作者: Haofei Shi; Xingzhan Wei; Zeyu Zhao; Xiaochun Dong; Yueguang Lu; Chunlei Du
刊名: Microwave and Optical Technology Letters
出版日期: 2010
卷号: 52, 期号:10, 页码:2179-2183
通讯作者: Haofei Shi
文章类型: 期刊论文
中文摘要: In this letter, a surface wave antenna based on the excitation of spoof surface plasmon mode at microwave frequency is proposed and demonstrated experimentally to effectively modulate the far field radiation, by integrating with one-dimensional subwavelength periodic corrugated grooves. Compared with the traditional surface wave antenna, the far field divergence of this spoof surface plasmon antenna exhibits a remarkable red shift. The numerical simulation and experimental data well accord with the predicted results given by grating scattering theory. Consequently, the surface wave antenna can be achieved with unique function and minimized in size by introducing spoof surface plasmon. c 2010 Wiley Periodicals, Inc.
英文摘要: In this letter, a surface wave antenna based on the excitation of spoof surface plasmon mode at microwave frequency is proposed and demonstrated experimentally to effectively modulate the far field radiation, by integrating with one-dimensional subwavelength periodic corrugated grooves. Compared with the traditional surface wave antenna, the far field divergence of this spoof surface plasmon antenna exhibits a remarkable red shift. The numerical simulation and experimental data well accord with the predicted results given by grating scattering theory. Consequently, the surface wave antenna can be achieved with unique function and minimized in size by introducing spoof surface plasmon. c 2010 Wiley Periodicals, Inc.
语种: 英语
内容类型: 期刊论文
URI标识: http://ir.ioe.ac.cn/handle/181551/4969
Appears in Collections:微电子装备总体研究室(四室微光学) _期刊论文

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作者单位: 中国科学院光电技术研究所

Recommended Citation:
Haofei Shi,Xingzhan Wei,Zeyu Zhao,et al. A new surface wave antenna-based spoof surface plasmon mechanism[J]. Microwave and Optical Technology Letters,2010,52(10):2179-2183.
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