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Ablation and optical third-order nonlinearities in Ag nanoparticles

机译:Ag纳米粒子的烧蚀和光学三阶非线性

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摘要

The optical damage associated with high intensity laser excitation of silver nanoparticles (NPs) was studied. In order to investigate the mechanisms of optical nonlinearity of a nanocomposite and their relation with its ablation threshold, a high-purity silica sample implanted with Ag ions was exposed to different nanosecond and picosecond laser irradiations. The magnitude and sign of picosecond refractive and absorptive nonlinearities were measured near and far from the surface plasmon resonance (SPR) of the Ag NPs with a self-diffraction technique. Saturable optical absorption and electronic polarization related to self-focusing were identified. Linear absorption is the main process involved in nanosecond laser ablation, but non-linearities are important for ultrashort picosecond pulses when the absorptive process become significantly dependent on the irradiance. We estimated that near the resonance, picosecond intraband transitions allow an expanded distribution of energy among the NPs, in comparison to the energy distribution resulting in a case of far from resonance, when the most important absorption takes place in silica. We measured important differences in the ablation threshold and we estimated that the high selectiveness of the SPR of Ag NPs as well as their corresponding optical nonlinearities can be strongly significant for laser-induced controlled explosions, with potential applications for biomedical photothermal processes.
机译:研究了与银纳米粒子(NPs)的高强度激光激发相关的光学损伤。为了研究纳米复合材料的光学非线性机制及其与消融阈值的关系,将植入Ag离子的高纯度二氧化硅样品暴露于不同的纳秒和皮秒激光辐照下。用自衍射技术测量了皮纳米粒子的表面等离子体共振(SPR)的附近和皮秒的折射和吸收非线性的幅度和符号。确定了与自聚焦有关的饱和光吸收和电子偏振。线性吸收是纳秒激光烧蚀的主要过程,但是当吸收过程变得明显依赖于辐照度时,非线性对于超短皮秒脉冲很重要。我们估计,在共振附近,皮秒内的带内跃迁使NP之间的能量分布得以扩展,而能量分布则导致了最不重要的吸收发生在二氧化硅中,而这种情况导致了共振以外的情况。我们测量了烧蚀阈值的重要差异,并且我们估计,Ag NP的SPR的高选择性及其相应的光学非线性对于激光诱导的受控爆炸具有重大意义,并且在生物医学光热过程中具有潜在的应用。

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