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and optimize TD-RAS (time-dependent restricted-active-space) methods for many-body systems including positrons. - Carry out large-scale numerical simulations of photoionization and de-excitation
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simulation work related to laser-plasma acceleration. This project contributes to the development of compact electron beam optics and diagnostics, essential for advancing the applications of plasma
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of the work is to advance and automate the use of ptychography on various sample types. In particular : 1) accelerate the reconstruction process using a multislice algorithm 2) allow a 3D reconstruction and 3
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measurements - Optimization of charging conditions and then neutralization of helium droplets. ISMO is a leading laboratory in molecular physics and its applications, located at Paris-Saclay University in
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of these tools and will be expected to introduce their own modifications in order to adapt and optimize the analysis for the study at hand. Other tasks include: * Optimizing the experimental setup (4D observations
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to the limited time available in the PhD thesis. The present application involves extending this work to characterize devices currently being manufactured at the CEA, as well as designing optimized optical
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tackles the C sequestration issue using a combination of selected plants to increase C rhizodeposition and inputs of stabilizing mineral phases. The project is organized in 5 work packages. It explores
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into district heating networks (DHN), and to study the architecture, sizing, and control strategies for its optimal integration into such networks. Currently, sensible heat storage remains the most widely used
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. The postoc will be in charge of : The synthesis of gold nanoparticles The co-encapsulation of drugs and gold nanoparticles in optimized PLGA NPs The physicochemical characterization of NPs by dynamic
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layer to accommodate lattice mismatch while enabling the active use of Si as a bottom cell. The applicant will be involved in the deposition and optimization of the GaAs, its doping, passivation/contact