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(Center for Nanoscience and Nanotechnology), a joint research unit of Université Paris-Saclay and the CNRS in Palaiseau. The researcher will work in the TONIQ team (Photonics Department) under
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methods to enhance our suite of metabolic modeling tools, including, but not limited to, the calculation, comparison, sampling, and visualization of fluxes. He or she will use these tools to integrate and
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, dimension, and build a vacuum chamber dedicated to the optical characterization of optomechanical systems. Integrate and operate a laser vibrometer to measure and analyze the devices' vibrational modes. Carry
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for this position will specifically study the links between galaxies and their cosmological environment through their morphology and intrinsic alignment. This work will be based, on the one hand, on an analysis
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micro-fabrication, and will consist in thin lines operating in DC conditions. The devices will be characterized by low temperature measurements in a dilution refrigerator and as a function of temperature
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simulations (MD), including the development or use of appropriate interatomic potentials to study adsorption, diffusion, and thin-film growth, as well as ion–matter interactions during deposition, whether ion
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(pure and metal-doped) and carbon chains in supernova ejecta. • Apply molecular dynamics (MD) methods to simulate the formation of alumina agglomerates. • Use ab initio wave function methods to model
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. Fluorescence lifetime is a powerful probe of molecular interactions, chemical environment and local medium properties, both in living cells and in nanostructures or functional materials. The project therefore
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intestine-on-chip models integrating multiple intestinal segments together with a functional enteric nervous system (ENS). The objective is to closely reproduce the structural, functional, and
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orthogonally to tonotopy. In collaboration with the Institut de la Vision, we will use new “Brainbow”-type fluorescent labeling tools to trace the neuronal connections between the various relays in the auditory