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- W2030690816 abstract "The resonant frequencies of the excited surface waves on a metal hole array with respect to the incident angle were studied in the terahertz region. The experimental and theoretical results demonstrate that the resonant peak of surface wave excitation splits into two when transmitted through a metal hole array off-normally. The high-order mode with resonant frequency above the cutoff frequency fc (plasma frequency effect) has a shorter attenuation length than that of the low-order mode whose resonant frequency is below fc. The reason is that the high-order mode is a coupled mode consisting of surface wave and hole modes, while the low-order mode is just an excited surface wave (which can be considered as the spoof surface plasmons). Our investigation may open a door to distinguish the spoof surface plasmons and the coupled modes of surface waves and hole modes. Changing the angle at which terahertz waves strike a hole-filled metal plate splits the radiation into two modes of different frequency. This is the finding of Lin Chen and co-workers from the University of Shanghai for Science and Technology in China, who studied the transmission of 0.1–0.5 THz terahertz radiation through a 250-µm-thick metal plate containing an array of 0.7-mm-diameter holes. They say that the observed mode splitting is due to the interaction between surface plasmon waves excited on the surface of the metal and the in-plane component of the incident terahertz wave. The researchers hope that such metal hole arrays could be useful for creating miniature components, such as filters and switches, for controlling terahertz radiation." @default.
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- W2030690816 date "2013-03-29" @default.
- W2030690816 modified "2023-10-12" @default.
- W2030690816 title "Mode splitting transmission effect of surface wave excitation through a metal hole array" @default.
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- W2030690816 doi "https://doi.org/10.1038/lsa.2013.16" @default.
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