DocumentCode :
1265661
Title :
Spontaneous emission of dye molecules, semiconductor nanocrystals, and rare-earth ions in opal-based photonic crystals
Author :
Gaponenko, S.V. ; Bogomolov, V.N. ; Petrov, E.P. ; Kapitonov, A.M. ; Yarotsky, D.A. ; Kalosha, I.I. ; Eychmueller, A.A. ; Rogach, A.L. ; McGilp, J. ; Woggon, U. ; Gindele, F.
Author_Institution :
Inst. of Phys., Acad. of Sci., Minsk, Byelorussia
Volume :
17
Issue :
11
fYear :
1999
fDate :
11/1/1999 12:00:00 AM
Firstpage :
2128
Lastpage :
2137
Abstract :
Photonic crystals based on silica colloidal crystals (artificial opals) exhibit pronounced stopbands for electromagnetic wave propagation and the corresponding modification of the photon density of states in the visible range. These spectrally selective features can be enhanced by impregnating opals with higher refractive materials like, e.g., polymers. Doping of these structures with dye molecules, semiconductor nanoparticles (quantum dots), and rare-earth ions provides a possibility to examine the challenging theoretical predictions of the inhibited spontaneous emission in photonic bandgap (PBG) materials. First experiments are discussed in which pronounced modification of spontaneous emission spectra and noticeable changes in decay kinetics were observed
Keywords :
colloids; dyes; nanostructured materials; optical polymers; photonic band gap; rare earth metals; semiconductor quantum dots; spontaneous emission; SiO2; artificial opal; decay kinetics; dye molecules; electromagnetic wave propagation; inhibited spontaneous emission; opal-based photonic crystals; photon density of states; photonic bandgap; polymers; quantum dots; rare-earth ions; semiconductor nanocrystals; silica colloidal crystals; spontaneous emission; spontaneous emission spectra; stopbands; visible range; Colloidal crystals; Crystalline materials; Electromagnetic propagation; Electromagnetic refraction; Nanocrystals; Optical refraction; Photonic crystals; Semiconductor materials; Silicon compounds; Spontaneous emission;
fLanguage :
English
Journal_Title :
Lightwave Technology, Journal of
Publisher :
ieee
ISSN :
0733-8724
Type :
jour
DOI :
10.1109/50.803003
Filename :
803003
Link To Document :
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