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6 Mar 2026 Job Information Organisation/Company CNRS Department Institut de planétologie et d'astrophysique de Grenoble Research Field Chemistry Physics Technology Researcher Profile Recognised
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processes, plasma magnetohydrodynamics (MHD), gyrokinetic or fully kinetic simulations, and/or particle-in-cell (PIC) simulations; 2. A research background in light-nucleus fusion in nuclear physics, such as
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materials on textiles. Develop and optimize plasma deposition processes for tailoring material properties for specific textile functionalities (antibiofilm, repellence, adhesion). Characterize the deposited
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contributions are: Conduct applied research on atmospheric pressure plasma deposition of functional materials on textiles. Develop and optimize plasma deposition processes for tailoring material properties
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Massachusetts Institute of Technology (MIT) | Cambridge, Massachusetts | United States | 2 months ago
or closely related science and engineering discipline at the time of appointment; experience working with fusion plasma diagnostics (development, operation, and data analysis); experience with fast-ion physics
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plasma physics or closely related science and engineering discipline at the time of appointment; experience working with fusion plasma diagnostics (development, operation, and data analysis); experience
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ultrafast processes involved in LWFA. You will use the PIC code Smilei to model short time-scale phenomena (plasma ionization, initial heating, and LWFA dynamics within the formed channel). You will also
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stage of the recruitment process for any candidate with a disability. We are open to considering applications from candidates wishing to work flexibly.
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— the conversion of photon energy into matter via the multiphoton Breit-Wheeler process, enabled by the advent of multi-petawatt laser technologies. The primary objective of the project is to exploit the theory and
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repetition rate) and high energies (via staging of plasma modules) required for application to particle physics and photon science. The position will be based at Oxford, utilising a dedicated plasma laboratory