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techniques for biological tissue studies. The candidate will work is this research team. The PhD candidate will present his work in international conferences around the world (1 to 3 international trips
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measure: photoreceptor function (functional optical signals), and the associated vascular response (blood-flow velocity, vessel diameter, NVC dynamics), using in vivo datasets acquired with the AO-RSO
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, led by Orange Labs, whose objective is to design and implement efficient algorithms for computing optimal solutions in order to recommend the best actions a telecommunication operator can undertake for
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ionogels. The candidate will test these electrolytes at LAAS on locally developed electrodes and will carry out research stays at PolyMAT to optimize their integration with MnO₂-based systems. - ICMAB-CSIC
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: For applications requiring short packets / low latency, it is important to obtain tight bounds for the optimal secrecy rate in finite blocklength. Building on the theoretical breakthrough by Polyanskiy
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the evaluation, the intensification and the optimization of carbonation (biotic and abiotic) processes involving different feedstocks, to address three different applications of industry decarbonation, in straight
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optoelectronic materials through advanced characterization and AI-guided optimization of epitaxial growth parameters. The PhD student will work on the various technological building blocks of the epitaxial growth
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silicon waveguides with a nanometric core. This work will include the development and optimization of simulation tools for the design of these waveguides, combining numerical results with simplified models
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approaches to avoid costly design and fabrication cycles for the optimization of these circuits are possible, in particular the use of Look-Up-Table (LUT)-based techniques that exploit the characterization
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to the industrial recovery and reuse of these critical elements. More specifically, the proposed mission will explore two avenues: - optimization of Rh solubilization during dissolution of model