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On second harmonic generation and multiphoton-absorption induced luminescence from laser-reshaped silver nanoparticles embedded in glass

机译:嵌入玻璃中的激光重整银纳米粒子的二次谐波产生和多光子吸收诱导的发光

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摘要

Spherical silver nanoparticles (NPs) of 30 nm diameter embedded in soda-lime glass were uniformly reshaped (elongated) after irradiation by a linearly polarised 250 fs pulsed laser operating within the NPs' surface plasmon resonance band. We observed second harmonic generation (SHG) and multiphoton-absorption-induced luminescence (MAIL) in the embedded laser-reshaped NPs upon picosecond (10 ps) pulsed laser excitation at 1064 nm. A complementary study of SHG and MAIL was conducted in soda-lime glass containing embedded, mechanically-reshaped silver NPs of a similar elongation ratio (aspect ratio) to the laser-reshaped NPs. This supports the notion that the observed difference in SHG and MAIL in the studied nanocomposite systems is due to the shape modification mechanism. The discrete dipole approximation method was used to assess the absorption and scattering cross-sections of the reshaped NPs with different elongation ratios.
机译:照射在钠钙玻璃中的直径为30 nm的球形银纳米颗粒(NPs)在线性偏振250 fs脉冲激光照射下在钠离子表面等离子体激元共振带内辐照后均匀整形(伸长)。我们观察到在1064 nm的皮秒(10 ps)脉冲激光激发下,嵌入式激光重塑NP中的二次谐波生成(SHG)和多光子吸收诱导的发光(MAIL)。在钠钙玻璃中进行了SHG和MAIL的补充研究,该钠钙玻璃包含嵌入的,机械重塑的银NP,其伸长率(纵横比)与激光重塑的NP相似。这支持了以下观点:在研究的纳米复合材料系统中,观察到的SHG和MAIL的差异是由于形状修饰机制所致。离散偶极近似法用于评估具有不同伸长率的重塑NP的吸收截面和散射截面。

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