Title :
Fluorescence enhancement assisted by the double plasmonic modes of gold nanorods
Author :
Si-Yun Liu ; Jia-Fang Li ; Lu Huang ; Zhi-Yuan Li
Author_Institution :
Lab. of Opt. Phys., Inst. of Phys., Beijing, China
Abstract :
Metal nanocrystal has attracted extensive interest due to its nanoscale confinement of electromagnetic field near the metal surface far beyond the diffraction limit. Fluorescence enhancement is one of the promising applications based on the interaction between such confined near field and fluorescence molecules. Here we present an interesting method by utilizing double surface plasmon resonance (SPR) modes of gold nanorod (GNR) to efficiently enhance the fluorescence. With the transversal and longitudinal mode separately matched with the excitation and emission of the fluorescence, a 4-time fluorescence enhancement factor has been achieved for the GNR-assisted nanosystem compared to the nanosystem based on gold nanosphere (GNS). Since the single SPR mode of GNS supports only excitation enhancement of the fluorescence, such double-mode enhancement scheme creates a flexible way for the fluorescence enhancement, which is superior to the traditional single-mode assisted enhancement method.
Keywords :
fluorescence; nanorods; plasmonics; 4-time fluorescence enhancement factor; GNR-assisted nanosystem; double plasmonic modes; double-mode enhancement scheme; electromagnetic field; fluorescence molecules; gold nanorods; longitudinal mode; metal nanocrystal; metal surface; near field; single-mode assisted enhancement method; surface plasmon resonance; Fluorescence; Gold; Nanoparticles; Optical surface waves; Plasmons; Scattering; fluorescence; gold nanorod; surface plasmon;
Conference_Titel :
Metamaterials (Meta), 2012 International Workshop on
Conference_Location :
Nanjing
Print_ISBN :
978-1-4673-2807-4
DOI :
10.1109/META.2012.6464935