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Bias field tailored plasmonic nano-electrode for high-power terahertz photonic devices.


ABSTRACT: Photoconductive antennas with nano-structured electrodes and which show significantly improved performances have been proposed to satisfy the demand for compact and efficient terahertz (THz) sources. Plasmonic field enhancement was previously considered the dominant mechanism accounting for the improvements in the underlying physics. However, we discovered that the role of plasmonic field enhancement is limited and near-field distribution of bias field should be considered as well. In this paper, we clearly show that the locally enhanced bias field due to the size effect is much more important than the plasmonic enhanced absorption in the nano-structured electrodes for the THz emitters. Consequently, an improved nano-electrode design is presented by tailoring bias field distribution and plasmonic enhancement. Our findings will pave the way for new perspectives in the design and analysis of plasmonic nano-structures for more efficient THz photonic devices.

SUBMITTER: Moon K 

PROVIDER: S-EPMC4561887 | biostudies-literature | 2015 Sep

REPOSITORIES: biostudies-literature

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Bias field tailored plasmonic nano-electrode for high-power terahertz photonic devices.

Moon Kiwon K   Lee Il-Min IM   Shin Jun-Hwan JH   Lee Eui Su ES   Kim Namje N   Lee Won-Hui WH   Ko Hyunsung H   Han Sang-Pil SP   Park Kyung Hyun KH  

Scientific reports 20150908


Photoconductive antennas with nano-structured electrodes and which show significantly improved performances have been proposed to satisfy the demand for compact and efficient terahertz (THz) sources. Plasmonic field enhancement was previously considered the dominant mechanism accounting for the improvements in the underlying physics. However, we discovered that the role of plasmonic field enhancement is limited and near-field distribution of bias field should be considered as well. In this paper  ...[more]

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