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Demonstration of unusual nanoantenna array modes through direct reconstruction of the near-field signal

机译:演示不同寻常nanoantenna数组模式通过直接近场的重建信号

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We perform complex investigation of the distribution of electromagnetic fields in the vicinity of an array of silver nanoantennas, which can operate as an efficient light trapping structure in the visible spectral range. In theory, this array should support unusual collective modes that possess an advantageous distribution of local electric fields, ensuring both strong field localization beneath nanoantennas and a low level of optical losses inside the metal. Using an aperture-type near-field scanning optical microscope (NSOM), we obtain near-field patterns that show excellent agreement with the NSOM signal, directly reconstructed from rigorous numerical simulations using an approach based on the electromagnetic reciprocity theorem. The agreement between theory and experiment allows us to claim the first-time experimental verification of the existence of collective modes with such properties in an array of silver nanoantennas. The confirmation of this physical phenomenon opens the door to a new class of light-trapping structures for photovoltaics.
机译:我们的执行复杂的调查电磁场的分布一个银nanoantennas数组,附近可以作为一种有效的光捕获操作结构在可见光谱范围内。理论上,这个数组应该支持不同寻常集体拥有一个有利的方式当地电场的分布,确保两个强场定位nanoantennas和低水平的光学损失内部的金属。近场扫描光学显微镜(NSOM),我们获得显示优秀的近场模式同意NSOM信号,直接重建从严格的数值模拟使用一个方法基于电磁互易定理。和实验让我们首次提出索赔实验验证的存在集体模式这样的属性数组中银nanoantennas。一个新类物理现象打开大门光伏发电的内部结构。

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