Controlled emission and coupling of small-size YAG:Ce3+ nanocrystals to gold nanowire
arXiv:1510.08769 · doi:10.1063/1.4931578
Abstract
We report a controlled emission of Ce3+ ions inside single Yttrium Aluminum Gar- net Y3Al5O12 (YAG:Ce3+) nanocrystals with a diameter of 22 +- 10 nm as a result of a coupling of a surface plasmon mode propagating along single gold nanowire (NW). From the PL images, the intensity for single YAG:Ce3+ nanocrystals in the proximity of the single gold NW increases by a factor of two in comparison with that without the NW. Also, we observe a maximum of 3.8-fold emission rate en- hancements for the single nanocrystal close to the single gold NW. The emission rate enhancements of YAG:Ce3+ nanocrystals are two folds the enhancements of 100-nm fluorescent nanospheres. This value is in agreement with the calculation of a combi- nation from the analytical scattering model and boundary element method (BEM). We also confirm that the small size light sources are more efficient for the emission rate enhancements. Thus, the controlled emission of small YAG:Ce3+ nanocrystals with the perfect photostabilities will pave the way for the ultimate efficient nanoscale light sources.
15 pages. 5 figures
References in corpus (7)
- Controlled coupling of a single nitrogen-vacancy center to a silver nanowire
- Demonstration of an erbium doped microdisk laser on a silicon chip
- Fast Purcell-enhanced single photon source in 1,550-nm telecom band from a resonant quantum dot-cavity coupling
- Movable high Q nanoresonators realized by semiconductor nanowires on a Si photonic crystal platform
- Observation of Spatial Fluctuations of the Local Density of States in Random Media
- Design for ultrahigh-Q position-controlled nanocavities of single semiconductor nanowires in 2D photonic crystals
- Spontaneous emission inhibition of telecom-band quantum disks inside single nanowire on different substrates