Title :
Polarization synthesis and sorting with an integrated silicon nanoantenna
Author :
Rodriguez-Fortuno, Francisco Jose ; Puerto, Daniel ; Griol, Amadeu ; Bellieres, Laurent ; Marti, Joan ; Martinez, A.
Author_Institution :
Nanophotonics Technol. Center, Univ. Politec. de Valencia, Valencia, Spain
Abstract :
We demonstrate the synthesis of any arbitrary polarization state of light, spanning the full Poincare sphere, radiated by a single silicon nanoantenna with two feeding waveguides. We experimentally demonstrate the synthesis of linearly, circularly and elliptically polarized light using this method. The reciprocal scenario allows the analysis of light impinging in the nanoantenna, sorting different linear incoming polarization components into different waveguides. Although the method is universal and can be extended to any wavelength and technology, we perform our demonstrations in a CMOS compatible silicon photonics platform, potentially allowing the fast electrical modulation of the amplitude and phase of conventional silicon waveguides to achieve a tuneable polarization synthesizer/analyser.
Keywords :
amplitude modulation; elemental semiconductors; integrated optoelectronics; light polarisation; nanophotonics; optical modulation; optical waveguides; phase modulation; silicon; waveguide antennas; CMOS compatible silicon photonics platform; Poincare sphere; Si; amplitude modulation; circularly polarized light synthesis; electrical modulation; elliptically polarized light synthesis; feeding waveguides; integrated silicon nanoantenna; light polarization state; linearly polarized light synthesis; phase modulation; polarization components; polarization sorting; reciprocal scenario; silicon waveguides; single silicon nanoantenna; tuneable polarization analyser; tuneable polarization synthesizer; CMOS integrated circuits; Optical waveguides; Polarization; Silicon; Sorting;
Conference_Titel :
Group IV Photonics (GFP), 2014 IEEE 11th International Conference on
Conference_Location :
Paris
Print_ISBN :
978-1-4799-2282-6
DOI :
10.1109/Group4.2014.6961967