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A bottom-up approach to fabricate optical metamaterials by self-assembled metallic nanoparticles

机译:自下而上的通过自组装金属纳米粒子制造光学超材料的方法

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We introduce a novel bottom-up approach to fabricate by self assembly a metamaterial from metallic nanoparticles in a two-step process. In the first step, a metamaterial made of densely packed silver nanoparticles is required. The material dispersion with increasing nanoparticle densities, from dispersed to randomly packed nanoparticles, was measured by spectroscopic ellipsometry, demonstrating high permittivity values in the visible. In the second step, this material was used to prepare spherical clusters by a method based on oil-in-water emulsion. The optical properties of these clusters were equally investigated by spectroscopic means. Comparisons with rigorous numerical simulations clearly indicate that, depending on the cluster size, their spectral response can be unambiguously associated with the excitation of a magnetic dipole resonance. As a consequence, such spherical clusters are promising building blocks for future metamaterials possessing a magnetic response in the visible range.
机译:我们介绍了一种新的自下而上的方法,该方法通过两步过程通过自组装从金属纳米颗粒中制造超材料。第一步,需要由致密堆积的银纳米颗粒制成的超材料。通过分光椭圆偏振法测量了纳米颗粒密度从分散到随机堆积的纳米颗粒的材料分散性,表明可见光的介电常数高。第二步,通过基于水包油乳液的方法,将该材料用于制备球形簇。这些团簇的光学性质通过光谱学方法同样地研究。与严格的数值模拟的比较清楚地表明,根据簇的大小,其光谱响应可以明确地与磁偶极子共振的激发相关。结果,这样的球形团簇有望成为未来超材料在可见范围内具有磁响应的基础。

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