7. Conclusion
The field of light/semiconductor material interactions opens up new prospects for the realization of optically controlled microwave functions. In addition, miniaturization and the growth of nanotechnologies are driving the development of studies into the microwave electromagnetic properties of 1D and 2D nanomaterials such as carbon nanotubes (CNTs), semiconductor nanowires, 2D nanostructures, including graphene, nanorods and semiconductor nanostructuring) together with the study of new RF, sub-mm and THz functions using these nanomaterials (generation,...
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Conclusion
Bibliography
Websites
Société Française d'Optique, Optics and Microwaves Club http://www.sfoptique.org/SFO/club-omw/
Events
IEEE International Topical Meeting on Microwave Photonics http://www.ieee/conferences_events
International Asia-Pacific Microwave Photonics Conference (APMP)
IEEE European Microwave Conference (EuMC) http://www.eumweek.com...
Patents
Some patents on microwave photocommutators
ALQUIÉ (.G), CHAZELAS (J.), COUTAZ (J.-L.), DECOSTER (D.), FORMONT (S.), MAGNIN (V.), ROUX (J.-F.), TRIPON-CANSELIET (Ch.). – Device for confining the optical control wave in the active zone of an optically controlled electronic device, FR2908569 (A1), May 16, 2008.
FORMONT (S.), CHAZELAS (J.), ALGANI (C.), ALQUIE (G.), CANSELIET (Ch.),...
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