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激光溅射无损TiO纳米颗粒产生的宽带高定向可见光散射

Broadband and Highly Directional Visible Light Scattering by Laser-Splashed Lossless TiO Nanoparticles.

作者信息

Zhang Yinan, Chen Shiren, Han Jing

机构信息

Institute of Photonic Chips, University of Shanghai for Science and Technology, Shanghai 200093, China.

Centre for Artificial-Intelligence Nanophotonics, School of Optical-Electrical and Computer Engineering, University of Shanghai for Science and Technology, Shanghai 200093, China.

出版信息

Molecules. 2021 Oct 10;26(20):6106. doi: 10.3390/molecules26206106.

Abstract

All-dielectric nanoparticles, as the counterpart of metallic nanostructures have recently attracted significant interest in manipulating light-matter interaction at a nanoscale. Directional scattering, as an important property of nanoparticles, has been investigated in traditional high refractive index materials, such as silicon, germanium and gallium arsenide in a narrow band range. Here in this paper, we demonstrate that a broadband forward scattering across the entire visible range can be achieved by the low loss TiO nanoparticles with moderate refractive index. This mainly stems from the optical interferences between the broadband electric dipole and the magnetic dipole modes. The forward/backward scattering ratio reaches maximum value at the wavelengths satisfying the first Kerker's condition. Experimentally, the femtosecond pulsed laser was employed to splash different-sized nanoparticles from a thin TiO film deposited on the glass substrate. Single particle scattering measurement in both the forward and backward direction was performed by a homemade confocal microscopic system, demonstrating the broadband forward scattering feature. Our research holds great promise for many applications such as light harvesting, photodetection and on-chip photonic devices and so on.

摘要

全介质纳米粒子作为金属纳米结构的对应物,最近在纳米尺度上操纵光与物质相互作用方面引起了极大的关注。作为纳米粒子的一个重要特性,定向散射已在传统的高折射率材料(如硅、锗和砷化镓)的窄带范围内进行了研究。在本文中,我们证明了具有适度折射率的低损耗TiO纳米粒子可以在整个可见光范围内实现宽带前向散射。这主要源于宽带电偶极子和磁偶极子模式之间的光学干涉。在前向/后向散射比在满足第一个克尔条件的波长处达到最大值。实验上,飞秒脉冲激光用于从沉积在玻璃基板上的TiO薄膜溅射出不同尺寸颗粒。通过自制的共焦显微镜系统对前向和后向的单颗粒散射进行测量,证明了宽带前向散射特性。我们的研究在诸如光捕获、光检测和片上光子器件等许多应用中具有巨大潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/509a/8540540/00a84c5bf10f/molecules-26-06106-g001.jpg

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