index - Equipe NIMPH du CIMAP - Nanomatériaux, Ions et Métamatériaux pour la PHotonique Access content directly

Welcome to the collection of the Nanomaterials, Ions and Metamaterials team for PHOTONICS (NIMPH) of the CIMAP laboratory

The NIMPH team is involved in the study of nanomaterials, ions and metamaterials with the objective of developing thin-film structures with innovative features in the fields of microelectronics, photonics and energy

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Nous contacter

Team HAL referee :
M. Julien Cardin
Ph. +33(0)2 31 45 26 64

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Rare-earth Epitaxy Cathodoluminescence Couches minces semi-conductrices Raman scattering Energy transfer Laser pyrolysis Silicon nanocrystals Terres rares Terbium Down-conversion Semiconductors Grazing incidence X-ray diffraction Oxides Silicium AFM Feature erasure Reactive magnetron sputtering Nanostructure Nanostructured materials Computational electromagnetic methods RF magnetron sputtering Rare-earth- doped materials Silicon nanoclusters HR STEM-HAADF Rare earths Photovoltaic Citric acid ADE-FDTD Liposomes XRD Irradiation Waveguides Multilayers Magnetron sputtering CO adsorption CoMoS Electron paramagnetic resonance Rare earth Microstructure physique Raman Si-rich silicon oxide Microstructure physics Quantum-well M-lines Cerium Al2O3 Oxide interface Thin films MoS2 Nanostructures Structural properties Si nanocluster Hafnium silicates Oxygen vacancies Silicon Atom probe tomography Hafnium silicate Matériaux hybrides Friction Nanostructuring Silicon nitride Couches minces Silicon photonics Conductivity Rare-earth-doped materials Lifetime Rare-earth ions Infrared absorption Thin film Pulvérisation magnétron radiofréquence Phase transition Electroluminescence Nanoparticules Erbium Doping Waveguide Pulvérisation cathodique PZT Photoluminescence Sputtering High-k dielectrics Films Guide d'onde Hillocks Luminescence Radiofrequency magnetron sputtering Optical amplifiers Neodymium Copper IR spectroscopy FTIR Refractive index GENOMIQUE Nanoparticles Fluorescence SiC Crystal structure Oxide materials Microstructure