Abstract

Metal quantum-dot composite glasses can exhibit an enhanced optical Kerr susceptibility, χ (3), whose real part is related to the n 2 I coefficient of the intensity-dependent refractive index. We used the Z-scan technique for measuring the n 2 I’s of micrometric composites films formed by copper with nanometer sized particles embedded in silica glass by means of radiofrequency magnetron sputtering technique, followed by thermal annealing in reducing atmosphere, to promote cluster growth. A single 6 ps long pulse at a repetition rate of 1 Hz was used to determine the picosecond fast (noncumulative, electronic) response of the composites. We obtain n 2 I from (0.48±0.24)×10 −11 to (2.0±1.0)×10 −11 cm 2/W and β of (3.1±1.6)×10 −7 to (8.5±4.2)×10 −7 cm/W in the explored range of Cu/SiO 2 composition.

Full Text
Paper version not known

Talk to us

Join us for a 30 min session where you can share your feedback and ask us any queries you have

Schedule a call