Title :
A plasmonic switch based on electrically controlled cavity resonances
Author :
McPolin, C. ; O´Connor, Daniel ; Bouillard, J.-S. ; Krasavin, Alexey V. ; Dickson, Wayne ; Wurtz, Gregory A. ; Zayats, Anatoly V.
Author_Institution :
Dept. of Phys., King´s Coll. London, London, UK
Abstract :
The ability to control and manipulate electromagnetic energy at the nanoscale, both dynamically and in real-time through low-energy external control signals is a missing link in our aim to develop a fully integrated sub-wavelength optical platform. To date, plasmonic systems demonstrating active functionalities, incorporating thermo- and electro-optic media, quantum dots, and photochromic molecules, are achieving incremental progress in switching and modulation applications. However, long switching times (>nanosecond) or the need for relatively strong control energy (~μJ/cm ) to observe sensible signal modulation (35% to 80%) limit the practical use of such structures as signal processing or other active opto-electronic nanodevices. In order for active plasmonics to offer a viable technological platform, both the magnitude and the speed of the employed nonlinearity, as well as the spectral/spatial tunability of the effect must be improved.In this context, we numerically demonstrate an active electro-optical field-effect plasmonic switch based on a resonant cavity structure incorporating indium tin oxide (ITO).
Keywords :
electro-optical switches; field effect devices; indium compounds; optical switches; plasmonics; ITO; active plasmonics; electrically controlled cavity resonances; electro-optical field-effect plasmonic switch; electromagnetic energy; indium tin oxide; resonant cavity structure; spatial tunability; spectral tuning; Cavity resonators; Electrooptic modulators; Optical surface waves; Optical switches; Plasmons;
Conference_Titel :
Lasers and Electro-Optics Europe (CLEO EUROPE/IQEC), 2013 Conference on and International Quantum Electronics Conference
Conference_Location :
Munich
Print_ISBN :
978-1-4799-0593-5
DOI :
10.1109/CLEOE-IQEC.2013.6801892