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超指向性介质纳米天线。

Superdirective dielectric nanoantennas.

作者信息

Krasnok Alexander E, Simovski Constantin R, Belov Pavel A, Kivshar Yuri S

机构信息

National Research University of Information Technologies, Mechanics and Optics, St Petersburg 197101, Russia.

出版信息

Nanoscale. 2014 Jul 7;6(13):7354-61. doi: 10.1039/c4nr01231c.

Abstract

We introduce the novel concept of superdirective nanoantennas based on the excitation of higher-order magnetic multipole moments in subwavelength dielectric nanoparticles. Our superdirective nanoantenna is a small Si nanosphere containing a notch, and is excited by a dipole located within the notch. In addition to extraordinary directivity, this nanoantenna demonstrates efficient radiation steering at the nanoscale, resulting from the subwavelength sensitivity of the beam radiation direction to variation of the source position inside the notch. We compare our dielectric nanoantenna with a plasmonic nanoantenna of similar geometry, and reveal that the nanoantenna's high directivity in the regime of transmission is not associated with strong localization of near fields in the regime of reception. Likewise, the absence of hot spots inside the nanoantenna leads to low dissipation in the radiation regime, so that our dielectric nanoantenna has significantly smaller losses and high radiation efficiency of up to 70%.

摘要

我们基于亚波长介电纳米颗粒中高阶磁多极矩的激发,引入了超指向性纳米天线这一全新概念。我们的超指向性纳米天线是一个带有缺口的小型硅纳米球,由位于缺口中的偶极子激发。除了具有非凡的指向性外,这种纳米天线在纳米尺度上还展示了高效的辐射控制,这是由于光束辐射方向对缺口中源位置变化具有亚波长敏感性所致。我们将这种介电纳米天线与具有相似几何形状的等离子体纳米天线进行了比较,发现该纳米天线在传输状态下的高指向性与接收状态下近场的强局域化并无关联。同样,纳米天线内部不存在热点导致辐射状态下的低损耗,因此我们的介电纳米天线具有显著更小的损耗以及高达70%的高辐射效率。

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