Average enhancement factor of molecules-doped coreshell (Ag @ SiO 2) on fluorescence
Journal
Optics Express
Journal Volume
18
Journal Issue
12
Pages
12788-12797
Date Issued
2010
Author(s)
Abstract
Average enhancement factor (AEF) of a coreshell (Ag @ SiO2) on the fluorescence of molecules doped within the silica shell is proposed and studied to estimate the overall performance of a large number of coreshells. Using Mie theory and dyadic Green's functions, the enhancement factor (EF) of a coreshell is first calculated for any arbitrarily oriented and located electric dipóle embedded in the shell. AEF is then obtained by averaging the individual EF over all possible orientations and positions of the electric dipoles. AEF of a FITC-doped coreshell (radius of Ag core: 25 nm, thickness of shell: 15 nm) irradiated by a laser of 488 nm for FITCs emission at 518 nm is 2.406. It is much smaller than the maximum EF (30.114) of a coreshell containing a single molecule with a radial orientation at its optimal position. For Alexa 430-doped coreshell excited at 428 nm, AEF is 12.34 at the emission of 538 nm. © 2010 Optical Society of America.
Type
journal article
