Title :
Polarisation to colour transformation via nano-antenna enhanced quantum dot emission
Author :
James, T.D. ; Panchenko, E. ; Nguyen, T.L. ; Mulvaney, P. ; Davis, T.J. ; Roberts, A.
Author_Institution :
Sch. of Phys., Univ. of Melbourne, Parkville, VIC, Australia
Abstract :
Metallic nano-antennas have been shown to be an excellent candidate for enhancing and directing optical emission from semiconductor based quantum dots (QD). QD photoluminescence (PL) enhancement is achieved by placing a suitably orientated QD in the near-field of a resonant metallic nano-antenna. Through the careful design of an optical Vee-antenna, two distinct visible resonances can be obtained, enabling the polarization dependant enhancement of two different QD sources, thus producing a polarization-to-colour transformation at the nano-scale. Possible future applications include an optical nano-scale demultiplexer device.
Keywords :
light polarisation; metamaterial antennas; nanophotonics; photoluminescence; semiconductor quantum dots; colour transformation; nanoantenna enhanced quantum dot emission; optical Vee-antenna; optical emission; optical nanoscale demultiplexer device; photoluminescence enhancement; polarisation; resonant metallic nanoantenna; semiconductor based quantum dots; visible resonance; Antennas; Educational institutions; Materials; Optical device fabrication; Optical polarization; Plasmons; Quantum dots; Antennas; Photoluminescence; Plasmon; Quantum dots;
Conference_Titel :
Optoelectronic and Microelectronic Materials & Devices (COMMAD), 2014 Conference on
Conference_Location :
Perth, WA
Print_ISBN :
978-1-4799-6867-1
DOI :
10.1109/COMMAD.2014.7038703