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Optical effects in artificial opals infiltrated with gold nanoparticles

机译:纳米金渗透的人造蛋白石的光学效应

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Polystyrene artificial opals are directly grown with embedded gold nanoparticles (NpAu) in their interstices. Reflectance spectra of samples having different sphere diameters and nanoparticles load clearly show a red shift of the photonic band gap as well as a reduction of its width without showing direct evidence of NpAu absorption. The case of transmission spectra is instead more complicated: here, overlapped to a broad NpAu absorption, a structure having unusual lineshape is detected. The infiltration of opal with NpAu removes the polarization dependence of the photonic band structure observed in bare opals. The lineshape of the absorption spectra suggest a spatial localization of the electromagnetic field in the volume where NpAu are confined thus enhancing its local intensity. This effect seems to be effective to stimulate optical nonlinearities of NpAu. Nanosecond transient absorption measurements on NpAu infiltrated opals indicate that a variation of transmission of about 10% is observed. Since this effect takes place within the pump pulse and since NpAu photoluminescence has been subtracted to the signal, we attribute it to an optical switching process.
机译:聚苯乙烯人造蛋白石直接在其空隙中与嵌入的金纳米颗粒(NpAu)一起生长。具有不同球体直径和纳米粒子负载的样品的反射光谱清楚地显示了光子带隙的红移以及其宽度的减小,而没有显示NpAu吸收的直接证据。相反,透射光谱的情况更加复杂:这里,与宽的NpAu吸收重叠,检测到具有异常线形的结构。 NpAu渗透蛋白石消除了在裸蛋白石中观察到的光子能带结构的偏振依赖性。吸收光谱的线形表明电磁场在NpAu被限制的体积中的空间定位,从而增强了其局部强度。这种效应似乎对激发NpAu的光学非线性有效。 NpAu渗透的蛋白石上的纳秒瞬态吸收测量表明,观察到的透射率变化约为10%。由于此效应发生在泵浦脉冲内,并且由于已将NpAu光致发光减去了信号,因此我们将其归因于光学开关过程。

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