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of wiretap coding in highly directive links and to obtain new bounds for the finite-blocklength secrecy rate under a mutual information secrecy constraint. Context : Physical layer security techniques
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- Analytical and numerical calculation skills (vibration theory, fluid-structure coupling, complex modal analysis, perturbation methods, numerical code development). - Proficiency in Matlab and Mathematica
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; apply the developed methodology to complex heterostructures The postdoctoral researcher will be recruited within the Chemical Theory and Modelling team (http://www.quanthic.org ) of the Institute
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dependence and decoupling aspect ratio and elongation, will be proposed. The candidate will join the « Plasma Theory and Modelisation » team of the PIIM Laboratory at Aix-Marseille University. Since the 90's
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conceptual DFT (linear response function, Fukui functions) or QTAIM theory (delocalization index), and their validation on a set of compounds known from the literature - interfacing a MLIP (Machine-Learned
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of very-high-energy gamma-ray sources, in the context of study of magnetic fields in the Milky Way galaxy and in the intergalactic medium. The work will include development of numerical code for modelling
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until now, even though a recently developed quantum theory for NL phenomena in this regime predicts improvements of several orders of magnitude in device performance compared to the current state
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- evolutionary theories ● Interpretation and formatting of the results obtained (publications) ● Proficiency in programming languages (Bash, Python, R), code management tools and software environments (Gitlab
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have a strong interest in both theory and numerical work. Numerical work involves code development (e.g., changing the C++ LAMMPS code, programming of data analysis tools, etc.), carrying out large-scale
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brings together a multidisciplinary team spanning electronic correlation theory, quantum chemistry, experimental attoscience, and antimatter physics. We are an equal opportunity employer and welcome