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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Template-free fabrication of Ag nanowire arrays/Al2O3 assembly with flexible collective longitudinal-mode resonance and ultrafast nonlinear optical response
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Template-free fabrication of Ag nanowire arrays/Al2O3 assembly with flexible collective longitudinal-mode resonance and ultrafast nonlinear optical response

机译:Ag纳米线阵列/ Al2O3组件的无模板制造,具有灵活的集体纵向模式共振和超快非线性光学响应

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摘要

We utilized a co-sputtering technique without any templates, featuring growing and etching synchronously, to delicately fabricate dense and ultrafine Ag nanowire arrays/alumina matrix composite films. Both the diameter and separation distance of the Ag nanowire arrays in the composites are not only within the scope of sub-10 nm but also tunable, which is very hard to accomplish for the conventional optical lithography- or template-based method. It is exhibited that the collective longitudinal plasmon resonance of the composite films, covering a wide range from visible to the near infrared region, is extremely sensitive to the geometrical parameters of the Ag nanowires, owing to the strong plasmonic coupling among neighboring nanowires. The experimental observations were also theoretically supported by the near-field electromagnetic numerical simulation. More interestingly, the fabricated composite films demonstrated ultrafast nonlinear optical response in the visible light region under femtosecond laser excitation, possessing a short relaxation time of 1.45 ps for the longitudinal mode (L mode) resonance. These results indicate that the proposed composite films as a building block with exotic optical properties could provide an opportunity to construct integrated nanodevices for plasmonic optical applications.
机译:我们利用无模板的共溅射技术(具有同步生长和蚀刻功能)来精细地制造致密且超细的Ag纳米线阵列/氧化铝基复合膜。复合材料中的银纳米线阵列的直径和间隔距离不仅在10 nm以下,而且可调谐,这对于传统的基于光学光刻或模板的方法很难实现。结果表明,由于相邻纳米线之间的强等离子耦合,复合膜的集体纵向等离振子共振覆盖了从可见光到近红外区域的宽范围,对Ag纳米线的几何参数极为敏感。理论上,近场电磁数值模拟也支持了实验观察。更有趣的是,所制造的复合膜在飞秒激光激发下在可见光区域表现出超快的非线性光学响应,对于纵向模式(L模式)共振具有1.45 ps的短弛豫时间。这些结果表明,所提出的复合膜作为具有奇特光学特性的构件可以为构造用于等离子光学应用的集成纳米器件提供机会。

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