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Directional radiation of Babinet-inverted optical nanoantenna integrated with plasmonic waveguide.


ABSTRACT: We present a Babinet-inverted optical nanoantenna integrated with a plasmonic waveguide. Using an integrated nanoantenna, we can couple the plasmon guide mode in a metal-insulator-metal (MIM) structure into the resonant antenna feed directly. The resonantly excited feed slot then radiates to free space and generates a magnetic dipole-like far-field pattern. The coupling efficiency of the integrated nanoantenna is calculated as being approximately 19% using a three-dimensional finite-difference time-domain (3D FDTD) simulation. By adding an auxiliary groove structure along with the feed, the radiation direction can be controlled similar to an optical Yagi-Uda antenna. We also determine, both theoretically and experimentally, that groove depth plays a significant role to function groove structure as a reflector or a director. The demonstrated Babinet-inverted optical nanoantenna integrated with a plasmonic waveguide can be used as a "plasmonic via" in plasmonic nanocircuits.

SUBMITTER: Kim J 

PROVIDER: S-EPMC4488836 | biostudies-other | 2015

REPOSITORIES: biostudies-other

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Directional radiation of Babinet-inverted optical nanoantenna integrated with plasmonic waveguide.

Kim Jineun J   Roh Young-Geun YG   Cheon Sangmo S   Kim Un Jeong UJ   Hwang Sung Woo SW   Park Yeonsang Y   Lee Chang-Won CW  

Scientific reports 20150702


We present a Babinet-inverted optical nanoantenna integrated with a plasmonic waveguide. Using an integrated nanoantenna, we can couple the plasmon guide mode in a metal-insulator-metal (MIM) structure into the resonant antenna feed directly. The resonantly excited feed slot then radiates to free space and generates a magnetic dipole-like far-field pattern. The coupling efficiency of the integrated nanoantenna is calculated as being approximately 19% using a three-dimensional finite-difference t  ...[more]

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