Tian Jingyi, Li Qiang, Yang Yuanqing, Qiu Min
State Key Laboratory of Modern Optical Instrumentation, College of Optical Science and Engineering, Zhejiang University, 310027, Hangzhou, China.
Nanoscale. 2016 Feb 21;8(7):4047-53. doi: 10.1039/c5nr06964e.
The study of all-dielectric nanoantennas has become an emerging branch of the study of optical nanoantennas in recent years, with all-dielectric nanoantennas having an outstanding ability to tailor forward and backward unidirectional scattering arising from interference mainly between electric dipoles and magnetic dipoles induced simultaneously inside a nanoparticle. To further control their radiation properties, we demonstrate the off-normal scattering, by a silicon stair-like nanoantenna, of an incident near-infrared plane wave due to multipolar interference. The radiation angle could be tailored over a 20-degree range by tuning the geometric parameters of the nanoantenna. A multipolar model was adopted to interpret the interference among one electric dipole, two magnetic dipoles and one electric quadrupole induced inside the nanoantenna. The maximum radiation angle reached 20° at a wavelength near 1550 nm. Such a stair-like nanoantenna sets a good example for further flexible manipulation of multipolar resonances inside all-dielectric nanoparticles, which is an essential step towards practical application of all-dielectric nanoantennas in the near future.
近年来,全介质纳米天线的研究已成为光学纳米天线研究中的一个新兴分支,全介质纳米天线具有卓越的能力,可调控主要由纳米颗粒内部同时感应产生的电偶极子和磁偶极子之间的干涉所引起的向前和向后的单向散射。为了进一步控制其辐射特性,我们展示了硅阶梯状纳米天线因多极干涉对入射近红外平面波的斜向散射。通过调整纳米天线的几何参数,辐射角可在20度范围内进行调控。采用多极模型来解释纳米天线内部感应产生的一个电偶极子、两个磁偶极子和一个电四极子之间的干涉。在波长接近1550 nm时,最大辐射角达到20°。这种阶梯状纳米天线为全介质纳米颗粒内部多极共振的进一步灵活操控树立了良好范例,这是全介质纳米天线在不久的将来实现实际应用的关键一步。