Affiliation:
1. Politecnico di Milano
2. Institute of Photonic and Nanotechnology - Consiglio Nazionale delle Ricerche
3. Institute of Scientific Computing
4. Dresden Center for Computational Materials Science (DCMS)
5. Université de Toulon
6. Solnil
7. University of Brescia
Abstract
Dewetted, SiGe nanoparticles have been successfully exploited for light management in the visible and near-infrared, although their scattering properties have been so far only qualitatively studied. Here, we demonstrate that the Mie resonances sustained by a SiGe-based nanoantenna under tilted illumination, can generate radiation patterns in different directions. We introduce a novel dark-field microscopy setup that exploits the movement of the nanoantenna under the objective lens to spectrally isolate Mie resonances contribution to the total scattering cross-section during the same measurement. The knowledge of islands’ aspect ratio is then benchmarked by 3D, anisotropic phase-field simulations and contributes to a correct interpretation of the experimental data.
Subject
Atomic and Molecular Physics, and Optics
Cited by
6 articles.
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