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Spatially oriented plasmonic ‘nanograter’ structures

机译:空间取向的等离子“纳米光栅”结构

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摘要

One of the key motivations in producing 3D structures has always been the realization of metamaterials with effective constituent properties that can be tuned in all propagation directions at various frequencies. Here, we report the investigation of spatially oriented “Nanograter” structures with orientation-dependent responses over a wide spectrum by focused-ion-beam based patterning and folding of thin film nanostructures. Au nano units of different shapes, standing along specifically designated orientations, were fabricated. Experimental measurements and simulation results show that such structures offer an additional degree of freedom for adjusting optical properties with the angle of inclination, in additional to the size of the structures. The response frequency can be varied in a wide range (8 μm–14 μm) by the spatial orientation (0°–180°) of the structures, transforming the response from magnetic into electric coupling. This may open up prospects for the fabrication of 3D nanostructures as optical interconnects, focusing elements and logic elements, moving toward the realization of 3D optical circuits.
机译:产生3D结构的主要动机之一一直是实现具有有效成分特性的超材料,可以在各种频率的所有传播方向上对其进行调整。在这里,我们报告了基于聚焦离子束的图案化和薄膜纳米结构折叠的空间取向的“纳米光栅”结构的研究,该结构具有较宽的取向依赖性。制作了沿特定指定方向站立的不同形状的金纳米单元。实验测量和模拟结果表明,除了结构尺寸之外,这种结构还提供了额外的自由度,用于随倾斜角度调整光学特性。响应频率可以通过结构的空间方向(0°–180°)在很宽的范围(8 μm–14mμm)中变化,从而将响应从磁耦合转换为电耦合。这可能为制造3D纳米结构作为光互连,聚焦元件和逻辑元件开辟前景,并朝着实现3D光电路的方向发展。

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