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Selective Optical Assembly of Highly Uniform Nanoparticles by Doughnut-Shaped Beams

机译:环形形状的光束对高度均匀的纳米粒子的选择性光学组装

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A highly efficient natural light-harvesting antenna has a ring-like structure consisting of dye molecules whose absorption band changes through selective evolutionary processes driven by external stimuli, i.e., sunlight depending on its territory and thermal fluctuations. Inspired by this fact, here, we experimentally and theoretically demonstrate the selective assembling of ring-like arrangements of many silver nanorods with particular shapes and orientations onto a substrate by the light-induced force of doughnut beams with different colours (wavelengths) and polarizations in conjunction with thermal fluctuations at room temperature. Furthermore, the majority of nanorods are electromagnetically coupled to form a prominent red-shifted collective mode of localized surface plasmons resonant with the wavelength of the irradiated light, where a spectral broadening also appears for the efficient broadband optical response. The discovered principle is a promising route for " bio-inspired selective optical assembly " of various nanomaterials that can be used in the wide field of nanotechnology.
机译:高效的自然采光天线具有由染料分子组成的环状结构,该染料分子的吸收带通过由外部刺激(即阳光)驱动的选择性进化过程而改变,取决于其区域和热波动。受这一事实的启发,在这里,我们在实验和理论上证明了许多具有特定形状和方向的银纳米棒的环状排列选择性地通过具有不同颜色(波长)和环形偏振的甜甜圈束的光诱导力而组装到基板上。以及室温下的热波动。此外,大多数纳米棒被电磁耦合以形成与辐射光的波长共振的局部表面等离子体激元的显着红移集体模式,其中光谱展宽也为有效的宽带光学响应而出现。所发现的原理是各种纳米材料的“生物启发式选择性光学组装”的有希望的途径,可以在纳米技术的广泛领域中使用。

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