DocumentCode :
1310936
Title :
Surface Plasmonic Nanodisk/Nanopan Lasers
Author :
Kwon, Soon-Hong ; Kang, Ju-Hyung ; Kim, Sun-Kyung ; Park, Hong-Gyu
Volume :
47
Issue :
10
fYear :
2011
Firstpage :
1346
Lastpage :
1353
Abstract :
We report the demonstration of subwavelength plasmonic lasers from a semiconductor nanodisk with a silver nanopan cavity. Full 3-D surface-plasmon-polariton (SPP) lasing was achieved because the nanodisk/nanopan structure enables excitation of high-quality SPP modes with subwavelength mode volumes. The optical properties of all possible resonant modes including SPP and optical modes excited in the nanodisk/nanopan were calculated and analyzed systematically using the finite-difference time-domain method. To fabricate the nanodisk/nanopan structure with an ultra-smooth silver surface, conformal deposition of silver was performed on the nanodisk. Rich SPP lasing actions were demonstrated through optical pumping of the fabricated structures. The observed SPP lasing modes were indentified unambiguously from measurements of the spectrum, mode image, and polarization state. These measurements compared well with the simulation results. In particular, the significant temperature-dependent threshold of the SPP lasers, which distinguishes SPP modes from conventional optical modes, was measured. This subwavelength SPP laser is a significant step toward the further miniaturization of a coherent light source in ultra-compact photonic integrated circuits.
Keywords :
finite difference time-domain analysis; laser cavity resonators; nanophotonics; polaritons; semiconductor lasers; silver; surface plasmons; 3D surface-plasmon-polariton lasing; conformal deposition; finite-difference time-domain method; mode image; nanopan lasers; optical modes; photonic integrated circuits; polarization state; resonant modes; semiconductor nanodisk; subwavelength mode volumes; surface plasmonic nanodisk lasers; Cavity resonators; Laser modes; Nanostructures; Optical device fabrication; Optical diffraction; Optical imaging; Silver; Cavity resonators; nanofabrication; nanophotonics; plasmons; semiconductor lasers;
fLanguage :
English
Journal_Title :
Quantum Electronics, IEEE Journal of
Publisher :
ieee
ISSN :
0018-9197
Type :
jour
DOI :
10.1109/JQE.2011.2166537
Filename :
6006500
Link To Document :
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