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• Support in maintenance of the Platynereis culture • Dissemination of results in oral and written form. • Activities • Calcium imaging, data acquisition and analysis • Opto/Chemogenetics at cellular and
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, quantum materials, nanophotonics, and mesoscopic physics, combining both experimental and theoretical approaches. The host group will be the PHOCOS team (Photonics and Spin Coherence), which investigates
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family of single photon emit-ters in hBN with excellent properties in terms of brightness, coherence and reproducibility. These emitters can be locally created using an electron beam in a scanning electron
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spectroscopy, and grazing-incidence X-ray diffraction. Particular attention will be paid to identifying and characterizing secondary phases that are likely to form during weathering processes, as
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objective will be to adapt tissue-clearing techniques for multimodal nonlinear imaging while preserving both the structural integrity of the biological specimens and the integrity of the optical signals
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length scales (such as coherence length, mean free path, etc.). The third theme extends the concept of "soft matter" to include biological systems. Topics range from complex systems to living tissues, and
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and experimental models to study metabolic communication in GBM invasion. In this context, spatial transcriptomics and mass spectrometry imaging provide tissue-level maps of tumour–microenvironment
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closely with LULI's exper-imental teams involved in the Taranis project. This thesis focuses on the theoretical and numerical study of parametric instabilities driv-en by broadband, low-temporal-coherence
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is organized into 2 WPs, implemented by ICPEES (Strasbourg) and IS2M (Mulhouse) partners whose expertise and technical competencies are highly complementary, ensuring a coherent and synergistic
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will be to analyze the performances of ultrathin hBN flakes (down to the monolayer limit) doped with VB centers for quantitative magnetic field imaging at cryogenic temperature (4K). The 2D quantum