We determine and use a minimal set of numerical simulations to create a simplified model for the spectral response of nanoantennae with respect to their geometric and modeling parameters. The simplified model is then used to rapidly obtain best-fit modeling parameters to match experimental results, accurately predict the spectral response for various geometries, and inversely design antennae to have a desired performance. This method is structure and model independent, and is applied here to both nanoantenna pair arrays and strips modeled using a 3D finite-element method and 2D spatial harmonic analysis, respectively. Typical numerical simulations may need hours per model, whereas this method, after the initial time to obtain a baseline set...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
Dans ce travail de Thèse de Doctorat, dans le contexte d’une application de filtrage optique pour la...
The evolution of nanotechnology has provided a better understanding of light-matter interaction at a...
We determine and use a minimal set of numerical simulations to create a simplified model for the spe...
Nanometer-scale plasmonic structures have a wide variety of applications in optics and photonics, wi...
Nanostructured plasmonic metamaterials, including optical nanoantenna arrays, are important for adva...
Since the advent of all-dielectric nonlinear nanoantennas (NAs), the multipolar Mie decomposition ha...
Recent advances in the fabrication of nanoscale structures have enabled the production of almost arb...
A full analytical description of a bowtie nanoantenna excited by a localized emitter is presented us...
Normal 0 7.8 磅 0 2 false false false EN-US ZH-CN X-NONE MicrosoftInt...
We apply two- and three-dimensional numerical calculations to study optical nanoantennae made of two...
Nanophotonics is a rapidly developing field, which aims to control light-matter interaction at the n...
Normal 0 7.8 磅 0 2 false false false EN-US ZH-CN X-NONE MicrosoftInt...
University of Minnesota Ph.D. dissertation. March 2017. Major: Mathematics. Advisor: Fadil Santosa....
A dielectric resonator nanoantenna array is numerically investigated. The study was carried out by u...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
Dans ce travail de Thèse de Doctorat, dans le contexte d’une application de filtrage optique pour la...
The evolution of nanotechnology has provided a better understanding of light-matter interaction at a...
We determine and use a minimal set of numerical simulations to create a simplified model for the spe...
Nanometer-scale plasmonic structures have a wide variety of applications in optics and photonics, wi...
Nanostructured plasmonic metamaterials, including optical nanoantenna arrays, are important for adva...
Since the advent of all-dielectric nonlinear nanoantennas (NAs), the multipolar Mie decomposition ha...
Recent advances in the fabrication of nanoscale structures have enabled the production of almost arb...
A full analytical description of a bowtie nanoantenna excited by a localized emitter is presented us...
Normal 0 7.8 磅 0 2 false false false EN-US ZH-CN X-NONE MicrosoftInt...
We apply two- and three-dimensional numerical calculations to study optical nanoantennae made of two...
Nanophotonics is a rapidly developing field, which aims to control light-matter interaction at the n...
Normal 0 7.8 磅 0 2 false false false EN-US ZH-CN X-NONE MicrosoftInt...
University of Minnesota Ph.D. dissertation. March 2017. Major: Mathematics. Advisor: Fadil Santosa....
A dielectric resonator nanoantenna array is numerically investigated. The study was carried out by u...
We numerically study second harmonic generation from dipole gold nanoantennas by analyzing the diffe...
Dans ce travail de Thèse de Doctorat, dans le contexte d’une application de filtrage optique pour la...
The evolution of nanotechnology has provided a better understanding of light-matter interaction at a...