Sort by
Refine Your Search
-
of the team are structured around 3 research aeras: • Research Area 1: On-line analytical methods via microfluidic devices for the quantification of air pollutants; • Research Area 2: Off-line analysis methods
-
of organized multicellular structures, with a particular focus on microtumors. The originality of the project lies in its systems-level approach, which integrates concepts from statistical physics and
-
. Their nonlinear evolution can lead to the emergence of large-scale coherent structures or turbulence, resulting in significant radial plasma transport—and thus degradation of plasma confinement. Understanding
-
of numerical models to study acoustic and optical interactions in metasurfaces, using in-house codes and COMSOL Multiphysics software. 2. Geometry and Material Optimization: Systematic exploration of structural
-
integrated in silicon- based photonic cavities. The first objective is to analyze the optical fine structure and stability of their emission lines through photoluminescence excitation spectroscopy. The impact
-
a close collaboration with the Institute of Pharmacology and Structural Biology (IPBS), which will provide complementary expertise in macrophage biology, the mechanobiology of phagocytosis and
-
to photonic structures, in particular plasmonic structures, whose resonances are confined within a few nanometres. The equipment and experimental setups for quantum optics experiments (lasers, cryostats
-
cellular changes. Advanced imaging techniques, including structural and functional-MRI, developed by Dr. Emmanuel Barbier (GIN director), will be used to optimize rSynES and monitor neuronal changes over
-
structure and hydrogen migration pathways. Integrated Approach and Modeling Framework The project is based on a multiscale observation strategy that combines dense nodal seismic networks, distributed acoustic
-
films with controlled thicknesses (from a few atomic layers to a few hundred nanometers) and morphologies—where the few-atomic-layer regime is particularly relevant to borophene-related structures and