Abu Baker Aya M, Boltaev Ganjaboy S, Iqbal Mazhar, Pylnev Mikhail, Hamdan Nasser M, Alnaser Ali S
Department of Physics, American University of Sharjah, Sharjah 26666, United Arab Emirates.
Institute of Ion Plasma and Laser Technologies, Uzbek Academy of Sciences, Tashkent 100125, Uzbekistan.
Materials (Basel). 2022 Jan 5;15(1):389. doi: 10.3390/ma15010389.
Mixed (FAPbI3).(MAPbBr3). perovskite thin films exhibit strong nonlinear optical responses, rendering them promising candidates for applications in photonics and optical communications. In this work, we present a systematic study on the ultrafast third-order nonlinear optical processes in mixed perovskite nanocrystals (NCs) by exploring the generation of third harmonic radiation and giant two-photon absorption-based photoluminescence (PL) when excited by femtosecond laser pulses of a 1030 nm central wavelength. A comparative analysis of the coherent third harmonic generation in the thin-film-containing perovskite nanocrystals has shown a 40× enhancement of the third harmonic signal compared to the signal generated in the pure quartz substrate. The cubic dependence of the third-nonlinear optical response of the (FAPbI).(MAPbBr). perovskites on the intensity of the driving radiation was identified using broadband 38 femtosecond driving pulses. The positive nonlinear refractive index ( = +1.4 × 10 cm·W) is found to play an important role in improving the phase-matching conditions of the interacting pulses by generating a strong third order harmonic. The giant two-photon absorption (TPA)-assisted PL peak was monitored and a blue shift of the PL was obtained in the higher intensity range of the laser pulses, with the absorption coefficient β estimated to be~+7.0 cm·MW at a 1030 nm laser wavelength.
混合(FAPbI3)·(MAPbBr3)钙钛矿薄膜表现出强烈的非线性光学响应,使其成为光子学和光通信应用的有前途的候选材料。在这项工作中,我们通过探索在中心波长为1030 nm的飞秒激光脉冲激发下产生的三次谐波辐射和基于巨双光子吸收的光致发光(PL),对混合钙钛矿纳米晶体(NCs)中的超快三阶非线性光学过程进行了系统研究。对含钙钛矿纳米晶体薄膜中的相干三次谐波产生的比较分析表明,与纯石英衬底中产生的信号相比,三次谐波信号增强了40倍。使用宽带38飞秒驱动脉冲确定了(FAPbI)·(MAPbBr)钙钛矿的三阶非线性光学响应与驱动辐射强度的立方关系。发现正非线性折射率( = +1.4 × 10 cm·W)通过产生强三阶谐波在改善相互作用脉冲的相位匹配条件方面起着重要作用。监测了巨双光子吸收(TPA)辅助的PL峰,并在激光脉冲的较高强度范围内获得了PL的蓝移,在1030 nm激光波长下,吸收系数β估计为~+7.0 cm·MW。