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postdoctoral position in the field of mid-infrared photonics and functional optical materials. The project focuses on the development of low-phonon-energy rare-earth-doped materials for compact mid-infrared
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C Moutou. This project aims at modeling the magnetic topologies and accretion processes of pre-main sequence low-mass (T Tauri) stars, monitored with the SPIRou near-infrared spectropolarimeter
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closely with engineers responsible for low-noise electronics, digital signal processing and FPGA development. * Contribute to the integration of new functionalities into REFIMEVE laser stations and
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by the dissymmetry factor, g_Lum. To date, major efforts have been devoted to develop CPL-active organic systems,[1,2] yet their gLum values are typically unsatisfactorily low. On the other hand
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insulator, localization, etc.) and to study their performance as thermal sensors for bolometers operating at low temperatures. The team thus covers the entire experimental cycle, from the design and
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carried out within the framework of the ANR Gravitation project, which aims to develop a new research field—low-frequency optomechanics—with applications in force sensing. Where to apply Website https
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materials under extreme conditions of intense magnetic fields (exceeding 90 T) and very low temperatures (down to 100 mK). Scientific targets will be to investigate the properties of quantum materials (UTe2
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catalytic materials based on low-melting-point metals, developed within the framework of the ANR-funded LIZA project (Liquid Metals for Stable Zeolite Catalysis). The candidate will employ the advanced
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(attenuators/shutters, low-profile and highly directional antennas) with a view to surpassing the current state of the art. The work will be carried out at the XLIM laboratory, UMR 7252 CNRS/University
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of freedom. In practice, this is achieved by approximating an (extremely large) high-dimensional tensor fully describing the system as the product of (much smaller) low-dimensional tensors which mainly encode