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Ultrafast third-order optical nonlinearities of heavy metal oxide glasses containing gold nanoparticles

机译:含金纳米粒子的重金属氧化物玻璃的超快三阶光学非线性

摘要

This work reports on the third-order nonlinear properties and the response time of GeO2-Bi2O3 glass, as well as the effect of gold nanoparticles on these properties. The nonlinear refractive index spectrum and the nonlinear absorption coefficient were determined by the Z-scan technique, and the response time was obtained through Kerr gate measurements, using femtosecond pulses. The results show that the presence of gold nanoparticles causes a saturable absorption effect that is overcome by the two-photon absorption process at higher light intensities, for wavelengths within the plasmon band. We measured a constant value for the nonlinear refractive index (n2) for the visible and infrared regions, which was not affected by the presence of gold nanoparticles in the sample. However, the n2 value is one order of magnitude higher than the one for fused silica and 1.5 times better than PGO (PbO-GeO2) glasses. In addition, the response time of the induced birefringence for the samples with and without gold nanoparticles is faster than the pulse duration (220 fs), indicating an ultra-fast electronic process.
机译:这项工作报告了GeO2-Bi2O3玻璃的三阶非线性特性和响应时间,以及金纳米粒子对这些特性的影响。通过Z扫描技术确定非线性折射率光谱和非线性吸收系数,并使用飞秒脉冲通过Kerr门测量获得响应时间。结果表明,对于等离激元带内的波长,金纳米颗粒的存在会导致可饱和的吸收效应,该吸收效应可通过在较高光强度下的双光子吸收过程来克服。我们测量了可见光和红外区域的非线性折射率(n2)的恒定值,该值不受样品中金纳米颗粒的存在的影响。但是,n2值比熔融石英的n2值高一个数量级,比PGO(PbO-GeO2)玻璃好1.5倍。另外,具有和不具有金纳米颗粒的样品的诱导双折射的响应时间都比脉冲持续时间(220 fs)快,这表明电子过程超快。

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