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Date
2022-02Type
- Report
ETH Bibliography
yes
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Abstract
Halide perovskites are promising materials with many significant applications in photovoltaics and optoelectronics. In this paper, we use integral methods to quantify the resonant properties of halide perovskite nano-particles. We prove that, for arbitrarily small particles, the subwavelength resonant frequencies can be expressed in terms of the eigenvalues of the Newtonian potential associated with its shape. We also characterize the hybridized subwavelength resonant frequencies of a dimer of two halide perovskite particles. Finally, we examine the specific case of spherical resonators and demonstrate that our new results are consistent with previous works. Show more
Publication status
publishedExternal links
Journal / series
SAM Research ReportVolume
Publisher
Seminar for Applied Mathematics, ETH ZurichOrganisational unit
09504 - Ammari, Habib / Ammari, Habib
Funding
ETH-34 20-2 - A biomimetic basis for visual processing and the perception of natural scenes (ETHZ)
863179 - Bio-Inspired Hierarchical MetaMaterials (EC)
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ETH Bibliography
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