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Telecommunications engineering / Electrical components / Antenna / Yagi-Uda antenna / Waveguide / Dipole antenna / Reflector / Surface plasmon / Electronic engineering / Radio electronics / Technology


Microwave Analogue to a Subwavelength Plasmon Switch Luke A. Sweatlock I,*, Stefan A. Maier I , Hany A. Atwater 1. Watson Laboratory of Applied Physics, California Institute of Technology, Pasadena CA 2. McKay Laboratory
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Document Date: 2008-01-30 01:00:54


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City

Berlin / /

Company

Watson Laboratory / Agilent / McKay Laboratory / /

Currency

USD / /

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Facility

Watson Laboratory of Applied Physics / California Institute of Technology / McKay Laboratory of Applied Science / Harvard University / /

IndustryTerm

microwave laboratory equipment / metal rods / energy transport / electromagnetic energy / plasmon waveguide technology / optical frequency plasmonic devices / microwave antenna array devices / metal nanoparticles / nanometer-scale metal particles / modulator structure using commercial antenna simulation software'o / functional plasmon devices / energy transfer / energy / aimed at radiating out electromagnetic energy / /

Organization

California Institute of Technology / Harvard University / US Federal Reserve / Air Force office of Scientific Research / /

Person

Luke A. Sweatlock / Bill Bridges / Stefan A. Maier / Power / Robh Walters / Julie Biteen / Ai / /

ProvinceOrState

California / /

PublishedMedium

Nature Materials / /

Technology

radiation / Microwave / radio frequency / plasmon waveguide technology / simulation / phase modulation / /

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