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Understanding the effect of bound excitons on two photon absorption process in anatase TiO2 nanospheres using ultrafast pulses

机译:使用超快脉冲了解结合激子对锐钛矿型TiO2纳米球中两个光子吸收过程的影响

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摘要

Nanoparticles of Titanium dioxide (TiO2) with its unique optical and electronic characteristics is an important material for photochemical catalysis. The efficiency of catalytic activity of TiO2 anatase nanostructures is greatly influenced by the photo-generated bound excitons. It is found that the interaction of bound excitons generated in TiO2 enhances the cubic nonlinearity of the system due to strong oscillation of photo-generated bound excitons. The trapped electron hole pair concentration is directly proportional to the photocatalytic efficiency of the TiO2 anatase nanostructures. In our report, we show how these photo-generated bound excitons play a significant role in origin of third-order optical nonlinearities. In particular, we have measured large phase shift and seen two photon absorption process through closed and open aperture Z-scan, respectively, using femtosecond pulses at 532 nm.
机译:具有独特的光学和电子特性的二氧化钛(TiO2)纳米颗粒是光化学催化的重要材料。 TiO2锐钛矿纳米结构的催化活性效率受光生结合激子的影响很大。发现由于光生结合的激子的强烈振荡,TiO2中产生的结合的激子的相互作用增强了系统的立方非线性。捕获的电子空穴对浓度与TiO2锐钛矿纳米结构的光催化效率成正比。在我们的报告中,我们显示了这些光生束缚激子如何在三阶光学非线性起源中发挥重要作用。特别是,我们已经测量到较大的相移,并使用532 nm的飞秒脉冲通过闭孔和开孔Z扫描分别看到了两个光子吸收过程。

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