Ganeev Rashid A, Atvars Aigars
Laboratory of Nonlinear Optics, Institute of Astronomy, University of Latvia, Raina Boulevard 19, LV-1586 Riga, Latvia.
Tashkent Institute of Irrigation and Agricultural Mechanization Engineers, National Research University, Kori Niyoziy 39, Tashkent 100000, Uzbekistan.
Nanomaterials (Basel). 2024 Jun 11;14(12):1010. doi: 10.3390/nano14121010.
The conversion efficiency of 800 nm, 65 fs radiation toward high-order harmonic generation (HHG) in laser-induced plasmas containing spherical and non-spherical nanoparticles (NPs) produced during the laser ablation of different metals in water using 1064 nm, 70 ps pulses was analyzed. Non-spherical NPs of different forms (triangle, cubic, bowtie, rod, rectangular, ellipsoid, etc.) were synthesized during the aging of some spherical NPs (In, Al, and Cu) in water. These NPs were then dried on the glass substrates and ablated to produce plasmas comprising nanostructured species of different morphologies. It was shown that harmonic generation in all synthesized non-spherical NPs was less efficient by a factor of at least five than in the initial spherical NP. Meanwhile, the spherical NPs that maintained the morphology state during aging (Ni, Ag, Mn, and Au) showed almost similar HHG conversion efficiency compared to the fresh spherical NPs. In all cases, the HHG conversion efficiency using spherical and non-spherical nanoparticles was notably larger compared to the atomic and ionic single-particle plasmas of the same elemental composition. NP plasmas demonstrated featureless harmonic distributions, contrary to the indium and manganese atomic/ionic plasmas, when the resonance enhancement of harmonics was observed.
分析了在使用1064 nm、70 ps脉冲对水中不同金属进行激光烧蚀时产生的含有球形和非球形纳米颗粒(NP)的激光诱导等离子体中,800 nm、65 fs辐射向高次谐波产生(HHG)的转换效率。在水中一些球形NP(铟、铝和铜)老化过程中合成了不同形状(三角形、立方体、蝴蝶结形、棒形、矩形、椭圆形等)的非球形NP。然后将这些NP干燥在玻璃基板上并进行烧蚀,以产生包含不同形态纳米结构物种的等离子体。结果表明,所有合成的非球形NP中的谐波产生效率至少比初始球形NP低五倍。同时,在老化过程中保持形态状态的球形NP(镍、银、锰和金)与新鲜球形NP相比,HHG转换效率几乎相似。在所有情况下,与相同元素组成的原子和离子单粒子等离子体相比,使用球形和非球形纳米颗粒的HHG转换效率明显更高。与铟和锰原子/离子等离子体相反,NP等离子体呈现出无特征的谐波分布,而铟和锰原子/离子等离子体中观察到了谐波的共振增强。