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Ultrafast nonlinear optical response of Ag nanoparticles embedded in mesoporous thin films

机译:嵌入介孔薄膜中的银纳米粒子的超快非线性光学响应

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Highly dispersed silver nanoparticles embedded in mesoporous thin films (MTFs) have been synthesized by modification of the interior surface of mesoporous silica with ethylenediamine moieties, which provided the coordination sites for the Ag ions, and subsequent reduction under hydrogen atmosphere. TEM observations show the mesoporous parent films have effectively controlled the growth of the synthesized silver nanoparticles. The composite films had an ultrafast nonlinear response time, as fast as 200 fs, and a third-order nonlinear optical susceptibility of 0.94 x 10(-10) esu, which was enhanced by the local field enhancement effect that was present when the silver nanoparticles were embedded in the surrounding dielectric matrix. The origin of the ultrafast nonlinear response and the enhanced nonlinearity of the composite films are attributed to the intraband transition of the free electrons near the Fermi surface of the incorporated silver nanoparticles.
机译:嵌入介孔薄膜(MTFs)中的高度分散的银纳米粒子是通过用乙二胺部分修饰介孔二氧化硅的内表面而合成的,该乙二胺部分为Ag离子提供了配位点,随后在氢气氛下还原。 TEM观察表明,介孔母体膜有效地控制了合成银纳米颗粒的生长。复合薄膜具有高达200 fs的超快非线性响应时间,以及0.94 x 10(-10)esu的三阶非线性光学磁化率,当银纳米颗粒存在时,其局部场增强效应得以增强。被嵌入周围的介电矩阵中。复合膜的超快非线性响应和增强的非线性特性的起源归因于所结合的银纳米颗粒的费米表面附近的自由电子的带内跃迁。

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