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Power and composition dependent non linear optical switching of TiO2-SiO2 nano composites

机译:TiO2-SiO2纳米复合材料的功率和成分依赖性非线性光学转换

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Linear as well as nonlinear absorption of TiO2-SiO2 nanocomposites prepared by sol gel process has been reported. To investigate the nonlinear properties, Z Scan technique was employed with 532 nm as the excitation wavelength followed by the calculation of the nonlinear optical constants. Z-scan experiments showed that when the excitation energy increased, the nonlinear absorption of the nanocomposites changed from reverse-saturable absorption to saturable absorption and then again back to reverse saturable absorption. Such a changeover in the sign of the nonlinearity is related to the interplay of exciton bleach and optical limiting mechanisms. The observed nonlinear absorption is found to be due to two photon absorption. The enhancement of the third-order nonlinearity in the composites can be due to the concentration of exciton oscillator strength.
机译:已经报道了通过溶胶凝胶法制备的TiO 2 -SiO 2 纳米复合材料的线性和非线性吸收。为了研究非线性特性,采用Z扫描技术,以532 nm作为激发波长,然后计算非线性光学常数。 Z扫描实验表明,当激发能增加时,纳米复合材料的非线性吸收从反饱和吸收变为饱和吸收,然后又回到反饱和吸收。非线性符号的这种变化与激子漂白剂和光学限制机制的相互作用有关。发现观察到的非线性吸收归因于两个光子吸收。复合材料中三阶非线性的增强可能归因于激子振荡器强度的集中。

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