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project, funded by the Defence Innovation Agency between IS2M and ICGM (Montpelier) on thermochemical heat storage. The main mission consists of the experimental study of thermochemical heat storage
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, the consequent high-power densification as well as the urgent energy transition, imposes challenges for both materials nanoengineering and energy management towards efficiently waste heat dissipation. To make
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quantum magnetometry. The work will rely on state-of-the-art instrumentation, in particular a low-temperature (1.4 K) STM operating under ultra-high vacuum and magnetic fields up to 5 Tesla, along with
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to evaluate the basic magnetic properties of the materials, such as saturation magnetisation and Curie temperature. The materials will then be studied for their transient physical properties such as absorption
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temperature. It is also interested in more fundamental questions, for example in the sciences of the universe with hypervelocity impacts or high-pressure phase diagrams. On this latter topic, a working group
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partitioning at relatively low (≤900°C) temperatures in contrast to most available high-temperature partitioning (≥ 900°C) extrapolated to low-temperature processes (600°C). The experimental zircon/melt
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the CRYONEXT project. This program is part of the national strategy for quantum technologies. The aim of the CRYONEXT program is to secure France's supply of high-performance cryogenics systems for quantum
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the programmed mechanical properties. These materials have the potential to replace thermosets in many high-performance industrial applications. The recruited postdoctoral researcher will contribute, within
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, depending on their background and research project. The post-doc's activities will include: - High-pressure and high-temperature experiments (large-volume presses, resistive and laser-heated diamond anvil
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to very high temperatures. Before injection, fuel is used to cool the walls of the combustion reactor. Some applications go further by using active fuel cooling, based on pyrolysis of the fuel before it is