We studied the coupling of diamond Si color centers with size-controlled Au nanoparticles obtained by chemical routes. The diamond samples, synthesized by Chemical Vapor Deposition, were polycrystalline films or isolated grains. The plasmonic responses of the Au nanoparticles were found to couple with the Ar+ laser frequency or with the frequency of the Si-defects photoluminescence (PL). When the PL of Si optical centers is resonant with the maximum of the Au extinction spectrum, a threshold behavior and a decrease of the PL band FWHM with increasing laser energy is detected, suggesting the transition from spontaneous to stimulated emission.
Orlanducci, S., Cianchetta, I., Tamburri, E., Guglielmotti, V., TERRANOVA PERSICHELLI, M.l. (2012). Effects of Au nanoparticles on photoluminescence emission from Si-vacancy in diamond. CHEMICAL PHYSICS LETTERS, 549, 51-57 [10.1016/j.cplett.2012.08.032].
Effects of Au nanoparticles on photoluminescence emission from Si-vacancy in diamond
ORLANDUCCI, SILVIA
;TAMBURRI, EMANUELA;Guglielmotti, V;TERRANOVA PERSICHELLI, MARIA LETIZIA
2012-01-01
Abstract
We studied the coupling of diamond Si color centers with size-controlled Au nanoparticles obtained by chemical routes. The diamond samples, synthesized by Chemical Vapor Deposition, were polycrystalline films or isolated grains. The plasmonic responses of the Au nanoparticles were found to couple with the Ar+ laser frequency or with the frequency of the Si-defects photoluminescence (PL). When the PL of Si optical centers is resonant with the maximum of the Au extinction spectrum, a threshold behavior and a decrease of the PL band FWHM with increasing laser energy is detected, suggesting the transition from spontaneous to stimulated emission.File | Dimensione | Formato | |
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