Numerics
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Marina Leboulanger is an applied mathematics and simulation engineer with expertise in scientific computing, numerical methods, and computational physics. Educated at ENSTA Paris and Institut Polytechnique de Paris, she has worked on advanced research projects in magnetohydrodynamics (MHD), plasma physics, inverse problems, and photonic simulations. Her experience includes the development and validation of numerical schemes in HPC environments, finite-volume methods on unstructured meshes, and scientific programming in Python, C++, and MATLAB for large-scale modelling and simulation applications.
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Dr. Marc Chung To Sang is a plasma physicist and HPC research engineer specialising in numerical modelling, parallel computing, and scientific code optimisation. He has extensive experience in plasma propulsion, particle-in-cell (PIC) simulations, and high-performance computing, including CPU-to-GPU migration and large-scale parallel algorithm development using Kokkos, MPI, and OpenMP. His background combines advanced plasma physics research with expertise in C++, Python, and Fortran, enabling the development of high-performance simulation tools for scientific and industrial applications.
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Dr. Jong Hern Mun is a plasma physicist specialising in plasma modelling, sheath physics, low-temperature plasmas, and numerical simulation. He earned a joint Ph.D. from Aix-Marseille University (France) and the University of Saskatchewan (Canada), conducting research on magnetron discharges, ion heating, and plasma–surface interactions. His expertise includes computational plasma physics, fluid and kinetic modelling, scientific programming (Python, C/C++, Fortran, MATLAB), and multiphysics simulation, complemented by teaching and research experience in both European and North American academic environments.
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Dr. Anurag Banerjee is a theoretical condensed matter physicist specialising in strongly correlated electron systems, unconventional superconductivity, quantum materials, and many-body topological phases. He has held research positions at CEA Paris-Saclay and Ben-Gurion University, where he developed advanced theoretical and computational approaches to study Mott insulators, charge density waves, superconductivity, and non-Fermi liquid behaviour. His expertise spans analytical modelling, quantum many-body theory, Monte Carlo methods, density functional theory (DFT), and high-performance scientific computing, with more than 20 peer-reviewed publications in leading physics journals.