论文标题
圆锥形全滴纳米颗粒的特殊散射状态
Special scattering regimes for conical all-dielectric nanoparticles
论文作者
论文摘要
全核纳米光子学为在半导体和介电纳米孔子中的独特光学效应所驱动的各种新现象和散射状态开设了一个场所。它们在可见范围内同时进行电气和磁反应来实现的特殊光学特征,为纳米镜,生物学,感应等方面的许多新应用铺平了一种方式。在这项工作中,我们研究制造易于截断的锥形锥形物,并由于沿着圆锥形固有的构造型号而构成了构造的型号,并实现了几个重要的散射状态,涉及沿着构造的旋转式构造的构图 - 沿构造的构造构成了复杂的轴承构造 - 沿构造的构造构成了复杂的构图。我们显示了这种对称性破裂,以提供各种类型的kerker效应(广义和横向kerker效应),非分裂的混合式anapole政权(同时在粒子中所有多物导致几乎完全散射抑制的所有多物的同时无脉冲条件),vecta vice vicesa,vice vicea,vice vicea,viclea vicea vicea,supersperscaterscattercattering sectercatters。受到相同直接的几何范式的控制,讨论的效果可以极大地简化具有不同功能的光子设备的制造过程。此外,由锥形开放式新视野驱动的额外自由度,以量身定制纳米级的光 - 物质相互作用。
All-dielectric nanophotonics opens a venue for a variety of novel phenomena and scattering regimes driven by unique optical effects in semiconductor and dielectric nanoresonators. Their peculiar optical signatures enabled by simultaneous electric and magnetic responses in the visible range pave a way for a plenty of new applications in nano-optics, biology, sensing, etc. In this work, we investigate fabrication-friendly truncated cone resonators and achieve several important scattering regimes due to the inherent property of cones - broken symmetry along the main axis without involving complex geometries or structured beams. We show this symmetry breaking to deliver various kinds of Kerker effects (Generalized and Transverse Kerker effects), non-scattering hybrid anapole regime (simultaneous anapole conditions for all the multipoles in a particle leading to the nearly full scattering suppression) and, vice versa, superscattering regime. Being governed by the same straightforward geometrical paradigm, discussed effects could greatly simplify the manufacturing process of photonic devices with different functionalities. Moreover, the additional degrees of freedom driven by the conicity open new horizons to tailor light-matter interactions at the nanoscale.