User:Antoine Moreau/amoi
From Scholarpedia
Edition activities : my own page
Where can I find article ideas ?
Categories of OSA
* Atmospheric and Oceanic Optics * Coherence and Statistical Optics * Diffraction and Gratings * Fiber Optics and Optical Communications * Geometric Optics * Holography * Imaging Systems * Instrumentation, Measurement, and Metrology * Integrated Optics * Lasers and Laser Optics * Materials -> optical properties, I guess * Medical Optics and Biotechnology * Metamaterials * Nonlinear Optics * Optical Design and Fabrication * Optical Devices * Optics at Surfaces * Photonic Crystals * Physical Optics * Quantum Optics * Scattering * Sensors * Solar Energy * Thin Films * Ultrafast Optics * X-ray Optics
Topics of conferences :
TOM 1 : * Cell nanosurgery * Photoporation * Optical sorting * Studies of cells and single molecules * Lab-on-a-chip optofluidic devices * Microfluidic biosensors * Biomolecular detection at the nanoscale * Fabrication technologies for optofluidics * Optical cell trapping
TOM 2 : Terahertz
* THz sources (QCL's, FELs, synchrotrons, etc.) * Detection of THz radiation (quantum dots, single photon detectors, time-gated, etc.) * THz plasmonics, metamaterials, photonic crystals * THz imaging * THz microscopy and microspectroscopy * THz integrated optics * THz applications (security, telecom, etc.) * THz-matter interaction (chemistry, liquid-state dynamics, solid-state physics, ultrafast spectroscopy, biology etc.) * Interactions between high-power THz radiation and matter * Remote sensing of gases and chemical/biological agents
TOM3 : Nanophotonics and Metamaterials
* Photonic crystals and wires, optical microcavities * Quantum dots and their applications * Quasiperiodic and random photonic systems * Super- and hyper-optical elements and other metamaterial concepts * Nanostructured metal surfaces and plasmonic guides * Plasmonic crystals * Field confinement and enhancement * Quantum and nonlinear optics in nanostructures * Active and tunable optical metamaterials * Near-field microscopy and high resolution optical imaging * Nanomanipulation with light * Nanophotonics for energy conversion applications * Nanophotonics for bio- and chemo-sensing applications * Theory and modelling for nanophotonics
TOM 4 : * Theory, design and modelling: Refractive and reflective optics including free-form surfaces, diffractive optics, gradient-index optics, nanostructured devices, guided wave optics, nonlinear optics, photonic band, slow light, plasmonics, etc. * Materials: dielectric materials, polymeric materials, nonlinear materials, nano-structured materials, metals, fluid elements, liquid crystals, etc. * Fabrication: Lithography and etching, diffusion and ion-exchange, nano-imprint and laser fabrication, etc. * Measurements: Interferometry, spectroscopy, reflectometry, etc. * Applications: Optical communications and optical interconnects, optical storage, displays and lighting, medical and biophotonic applications, etc. * Packaging & integration: Monolithic & hybrid packaging, 3D integration and micro-assembly etc.
TOM5 : Organic optics * Polymer lasers * Photonic components (carbon nanotubes, photonics, amplifiers, etc.) * OLED and OLET * Optical properties and spectroscopy * Organic-based photovoltaics and photodetectors * Organic micro-cavities * Hybrid organic/inorganic systems TOM 6 : Non linear optics and photonics * Nonlinear optical materials (dielectric, organic, composite, etc) * Nonlinear optical sources (from the terahertz to x-ray regime) * Nonlinear conversion processes (parametric, harmonic generation, attosecond pulses, Ra-man/Brillouin scattering, wave mixing, supercontinuum) * Micro- and nanostructured materials for nonlinear optics (fibers, waveguides, photonic crystals, plasma, filaments, plasmonic nanostructures and metamaterials) * Femtosecond and few-cycle pulses * Nonlinear spectroscopy and microscopy
TOM 7 : Optics and energy * Plasmonic solar cells * Optical waveguides for photovoltaic applications * Luminescent solar concentrators * OLED for solar energy * Photonics crystals for solar energy * Black silicon applications to solar energy * Optical properties of biofuels * Optically powered fiber networks * Silicon solar energy devices * Nanowires solar cells * Dye sensitized thin films * Sol gel processes for photovoltaic applications * Molecular photovoltaics * Ultrafast lasers sources applications to renewable energies * Green photonics * Spontaneous emitting devices