Third-order nonlinear optical response of Au-core CdS-shell composite nanoparticles embedded in BaTiO3 thin films

Au-core CdS-shell composite nanoparticles were synthesized by a direct self-assembly process and integrated into BaTiO3 thin films. Characterization by transmission electron microscopy showed that the average diameter of these composite nanoparticles was about 8 nm. Using the femtosecond time-resolv...

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Veröffentlicht in:Applied physics. B, Lasers and optics Lasers and optics, 2003-04, Vol.76 (4), p.435-439
Hauptverfasser: LIU, Y, LI, D, ZHU, R. Y, YOU, G. J, QIAN, S. X, YANG, Y, SHI, J. L
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Sprache:eng
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Zusammenfassung:Au-core CdS-shell composite nanoparticles were synthesized by a direct self-assembly process and integrated into BaTiO3 thin films. Characterization by transmission electron microscopy showed that the average diameter of these composite nanoparticles was about 8 nm. Using the femtosecond time-resolved optical Kerr effect method, we investigated the third-order nonlinear optical response of the AudS nanoparticles embedded in the BaTiO3 thin films at a wavelength of 800 nm. An ultrafast nonlinear response and a large effective third-order nonlinear susceptibility of *y=7.7X10 esu were observed. We attributed the enhancement of the third-order optical nonlinearity to a localized electric field effect originating from the core-shell structure under off-surface-plasmon resonance conditions.
ISSN:0946-2171
1432-0649
DOI:10.1007/s00340-002-1068-4