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Phase transformation and nanograting structure on TiO2 rutile single crystal induced by infrared femtosecond laser

机译:飞秒激光诱导的TiO2金红石型单晶的相变和纳米光栅结构。

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In this paper, Titanium dioxide (TiO2) rutile single crystal was irradiated by infrared femtosecond laser pulses with repetition rate of 250 kHz. For a P-polarized femtosecond laser, the periodic nanograting structure on the ablation crater surface was formed. The periodicity is much less than the laser wavelength. The direction of nanograting alignment depends on the polarization laser beam. Micro-Raman spectra show that the intensity of Eg Raman vibrating mode of rutile phase increases and that of Alg Raman vibrating mode decreases apparently within the ablation crater. With the increase of irradiation time and laser average power, the Raman vibrating modes of anatase phase emerged. Rutile phase of TiO2 single crystal is partly transformed into anatase phase.
机译:本文用红外飞秒激光脉冲以250 kHz的重复频率辐照二氧化钛(TiO2)金红石型单晶。对于P偏振飞秒激光器,在烧蚀坑表面上形成了周期性的纳米光栅结构。周期性远小于激光波长。纳米光栅排列的方向取决于偏振激光束。显微拉曼光谱表明,在烧蚀坑中,金红石相的Eg Raman振动模式的强度明显增加,而Alg Raman振动模式的强度明显减小。随着照射时间和激光平均功率的增加,出现了锐钛矿相的拉曼振动模式。 TiO2单晶的金红石相部分转化为锐钛矿相。

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