论文标题

具有纯高阶多极散射的工程纳米颗粒

Engineering nanoparticles with pure high-order multipole scattering

论文作者

Zenin, Vladimir A., Garcia-Ortiz, Cesar E., Evlyukhin, Andrey B., Yang, Yuanqing, Malureanu, Radu, Novikov, Sergey M., Coello, Victor, Chichkov, Boris N., Bozhevolnyi, Sergey I., Lavrinenko, Andrei V., Mortensen, N. Asger

论文摘要

控制纳米颗粒的散射方向性的能力对许多纳米局部应用的需求很高。挑战之一是设计产生纯高阶多极散射(例如章鱼,六核)的纳米颗粒,与强的低阶多极散射相比,其贡献通常可以忽略不计(即偶极子或四倍体)。在这里,我们提出了一种直观的方式来设计此类纳米颗粒,通过引入其中的空隙。我们表明,壳和环纳米结构都允许具有几乎纯高阶多极散射的机制。从经过实验设计的硅环近红外波长(〜800 nm)的实验测量的散射图繁殖了电章鱼和磁性六边形的良好散射模式。我们的发现从给定的复杂散射特性中显着提高了纳米颗粒的反向工程,并在生物传感,光学跨空面和量子通信中可能应用。

The ability to control scattering directionality of nanoparticles is in high demand for many nanophotonic applications. One of the challenges is to design nanoparticles producing pure high-order multipole scattering (e.g., octopole, hexadecapole), whose contribution is usually negligible compared to strong low-order multipole scattering (i.e., dipole or quadrupole). Here we present an intuitive way to design such nanoparticles by introducing a void inside them. We show that both shell and ring nanostructures allow regimes with nearly pure high-order multipole scattering. Experimentally measured scattering diagrams from properly designed silicon rings at near-infrared wavelengths (~ 800 nm) reproduce well scattering patterns of an electric octopole and magnetic hexadecapole. Our findings advance significantly inverse engineering of nanoparticles from given complex scattering characteristics, with possible applications in biosensing, optical metasurfaces, and quantum communications.

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