DIELECTRIC NANOANTENNAS

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DIELECTRIC NANOANTENNAS
   Plasmonics appeared more than a decade ago as a new research direction with high potential for future industrial applications. However, plasmonic materials are not compatible with Complementary metal–oxide–semiconductor (CMOS) technology and experience strong energy losses in the optical spectral range. This strongly limits their real-world application.

In the Dielectric Nanoantennas Pharos Programme, we are working on the development of dielectric and semiconductor nanostructures as a substitute for plasmonics for various optoelectronics applications. A unique advantage of these dielectric and semiconductor nanostructures is that they are almost loss-free and possess strong resonant behaviour at optical frequencies similar to plasmonic nanostructures.

written by sabin



KUIFANYA SIMU YAKO IWE NA UWEZO KUPITA IPHONEE X NA KUTUMIA MB ZA BURE BONYEZA APA CHINI During its two year run, the project will award approximately 100 major reporting grants and provide mentoring to support the best ideas for stories on development issues. Journalists who produce the best stories published or broadcasted in media that reach African audiences, will win a major international reporting trip. During its two year run, the project will award approximately 100 major reporting grants and provide mentoring to support the best ideas for stories on development issues. Journalists who produce the best stories published or broadcasted in media that reach African audiences, will win a major international reporting trip.
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