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Collective optical Kerr effect exhibited by an integrated configuration of silicon quantum dots and gold nanoparticles embedded in ion-implanted silica

机译:嵌入离子注入二氧化硅中的硅量子点和金纳米颗粒的集成结构显示出集体光学克尔效应

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摘要

The study of the third-order optical nonlinear response exhibited by a composite containing gold nanoparticles and silicon quantum dots nucleated by ion implantation in a high-purity silica matrix is presented. The nanocomposites were explored as an integrated configuration containing two different ion-implanted distributions. The time-resolved optical Kerr gate and z-scan techniques were conducted using 80 fs pulses at a 825 nm wavelength; while the nanosecond response was investigated by a vectorial two-wave mixing method at 532 nm with 1 ns pulses. An ultrafast purely electronic nonlinearity was associated to the optical Kerr effect for the femtosecond experiments, while a thermal effect was identified as the main mechanism responsible for the nonlinear optical refraction induced by nanosecond pulses. Comparative experimental tests for examining the contribution of the Au and Si distributions to the total third-order optical response were carried out. We consider that the additional defects generated by consecutive ion irradiations in the preparation of ion-implanted samples do not notably modify the off-resonance electronic optical nonlinearities; but they do result in an important change for near-resonant nanosecond third-order optical phenomena exhibited by the closely spaced nanoparticle distributions.
机译:提出了由金纳米颗粒和硅量子点的复合物表现出的三阶光学非线性响应的研究,该复合物通过离子注入在高纯度二氧化硅基质中成核。纳米复合材料被研究为包含两种不同离子注入分布的集成构型。时间分辨光学克尔门和z扫描技术是使用波长为825 nm的80 fs脉冲进行的;而纳秒响应是通过矢量双波混合方法在532 nm处以1 ns脉冲进行研究的。飞秒实验的超快纯电子非线性与光学Kerr效应有关,而热效应被认为是引起纳秒脉冲引起的非线性光学折射的主要机制。进行了对比实验测试,以检查Au和Si分布对总三阶光学响应的​​贡献。我们认为,在离子注入样品的制备过程中,连续离子辐照产生的其他缺陷不会明显改变非共振电子光学非线性。但是它们确实导致了由紧密分布的纳米粒子分布所表现出的近共振纳秒三阶光学现象的重要变化。

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