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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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on exploring materials under non-ambient conditions—combining pressure, temperature, light irradiation—with advanced characterization techniques including XRD and complementary spectroscopic techniques. [1
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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