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The role of phase-matching and nanocrystal-size effects in three-wave mixing and CARS processes in porous gallium phosphide

机译:相匹配和纳米晶体尺寸效应在多孔磷化镓的三波混合和CARS过程中的作用

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摘要

Nonlinear-optical interactions, such as second-harmonic and sum-frequency generation and coherent anti-Stokes Raman spectroscopy (CARS), are investigated in porous GaP for the first time by means of a novel laser source based on mode-locked picosecond Nd~(3+):YVO_4 laser and subsequent continuum generation in an optical fiber. The efficiency of the former two nonlinear optical processes is shown to be strongly dependent on the wavelengths of the interacting waves and tends to increase with the decrease of the excitation wavelength. The power of the generated second-harmonic and sum-frequency increases by a factor of 2 and 30, respectively, compared to the crystalline GaP. In contrast, the CARS signal in porous GaP is found to be less efficient than one in crystalline GaP. The observed results are explained in terms of competition of the phase-matching effects in GaP nanocrystals and the enhanced photon lifetime in scattering porous GaP layers.
机译:首次基于锁模皮秒Nd〜的新型激光源,研究了多孔GaP中的非线性光学相互作用,如二次谐波和和频率的产生以及相干反斯托克斯拉曼光谱(CARS)。 (3 +):YVO_4激光以及随后在光纤中产生的连续谱。前两个非线性光学过程的效率显示出强烈依赖于相互作用波的波长,并且随着激发波长的减小而趋于增加。与晶体GaP相比,产生的二次谐波和和频的功率分别增加了2倍和30倍。相反,发现多孔GaP中的CARS信号效率不如结晶GaP中的CARS信号有效。根据GaP纳米晶体中的相位匹配效应的竞争以及散射的多孔GaP层中光子寿命的延长,解释了观察到的结果。

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