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Enhanced Optical Nonlinearity Of Surfactant-Capped Cds Quantum Dots Embedded In An Optically Transparent Polystyrene Thin Film

APPLIED PHYSICS LETTERS(2008)

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Abstract
Nanocomposites of surfactant-capped CdS quantum dots embedded in polystyrene thin film have been prepared and characterized by z-scan measurements. Large values of the two- and three-photon absorption coefficients were observed at 532 nm (252 cm/GW) and 1064 nm (160 cm(3)/GW(2)). The cross sections of absorption were similar to 1x10(-44) cm(4) s/photon (532 nm) and 8x10(-73) cm(6) s(2)/photon(2) (1064 nm). These results are among the highest values of nonlinear absorption reported and orders of magnitude larger than CdS quantum dots capped by inorganic materials or in other matrix material. The high multiphoton absorption suggests that this class of materials is extremely promising for optical applications. (C) 2008 American Institute of Physics.
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Key words
quantum dot,absorption coefficient,cross section,nonlinear optics,thin film
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