ETH Zurich , Optical Nanomaterial Group, Institute for Quantum Electronics, Department of Physics , Auguste-Piccard Hof 1 , 8093 Zurich , Switzerland.
Saint Petersburg Academic University , Ul. Khlopina 8/3 , 194021 Saint Petersburg , Russia.
Nano Lett. 2018 Jun 13;18(6):3695-3702. doi: 10.1021/acs.nanolett.8b00830. Epub 2018 May 24.
Nonradiating electromagnetic configurations in nanostructures open new horizons for applications due to two essential features: a lack of energy losses and invisibility to the propagating electromagnetic field. Such radiationless configurations form a basis for new types of nanophotonic devices, in which a strong electromagnetic field confinement can be achieved together with lossless interactions between nearby components. In our work, we present a new design of free-standing disk nanoantennas with nonradiating current distributions for the optical near-infrared range. We show a novel approach to creating nanoantennas by slicing III-V nanowires into standing disks using focused ion-beam milling. We experimentally demonstrate the suppression of the far-field radiation and the associated strong enhancement of the second-harmonic generation from the disk nanoantennas. With a theoretical analysis of the electromagnetic field distribution using multipole expansions in both spherical and Cartesian coordinates, we confirm that the demonstrated nonradiating configurations are anapoles. We expect that the presented procedure of designing and producing disk nanoantennas from nanowires becomes one of the standard approaches to fabricating controlled chains of standing nanodisks with different designs and configurations. These chains can be essential building blocks for new types of lasers and sensors with low power consumption.
由于两个基本特征,纳米结构中的非辐射电磁构型为应用开辟了新的视野:缺乏能量损失和对传播电磁场的不可见性。这种无辐射的构型为新型纳米光子器件奠定了基础,在这些器件中,可以实现强电磁场的限制,同时实现相邻组件之间的无损耗相互作用。在我们的工作中,我们提出了一种新的设计,用于在光学近红外范围内具有非辐射电流分布的自由-standing 盘状纳米天线。我们展示了一种通过使用聚焦离子束铣削将 III-V 纳米线切成立盘来创建纳米天线的新方法。我们通过实验证明了远场辐射的抑制以及盘状纳米天线的二次谐波产生的强烈增强。通过使用球坐标和笛卡尔坐标中的多极展开对电磁场分布进行理论分析,我们证实所展示的无辐射构型是反磁偶极子。我们预计,从纳米线设计和生产盘状纳米天线的方法将成为制造具有不同设计和构型的受控立盘纳米线链的标准方法之一。这些链可以成为低功耗新型激光和传感器的基本构建块。