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Large-Scale and Low-Cost Fabrication of Silicon Mie Resonators

机译:硅片谐振器的大规模和低成本制作

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摘要

High index dielectric nanoparticles have been proposed for many different applications. However, widespread utilization in practice also requires large-scale production methods for crystalline silicon nanoparticles, with engineered optical properties in a low-cost manner. Here, we demonstrate a facile, low-cost, and large-scale fabrication method of crystalline silicon colloidal Mie resonators in water, using a blender. The obtained nanoparticles are polydisperse with an almost spherical shape and the diameters controlled in the range 100-200 nm by a centrifugation process. Then the size distribution of silicon nanoparticles enables broad extinction from UV to near-infrared, confirmed by Mie theory when considering the size distribution in the calculations. Thanks to photolithographic and drop-cast deposition techniques to locate the position on a substrate of the colloidal nanoparticles, we experimentally demonstrate that the individual silicon nanoresonators show strong electric and magnetic Mie resonances in the visible range.
机译:已经提出了高指数介电纳米颗粒用于许多不同的应用。然而,实践中的广泛利用还需要用于晶体硅纳米颗粒的大规模生产方法,以低成本方式具有工程化学光学性能。在这里,我们展示了使用搅拌机在水中的晶体硅胶MIE谐振器的容易,低成本和大规模的制造方法。所得纳米颗粒具有几乎球形形状的多分散,并且通过离心过程在100-200nm的范围内控制的直径。然后,硅纳米颗粒的尺寸分布使得在考虑计算中的尺寸分布时,通过MIE理论证实了从UV到近红外近红外线。由于光刻和液化沉积技术来定位胶体纳米颗粒的基材上的位置,我们通过实验证明了各种硅纳米管在可见范围内显示出强电和磁性MIE共振。

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