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. Our original approach relies on an optical encoding and sequencing, through the development of fluorescently-encoded synthetic polymers, in combination with a detection technique for a fast decoding of
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sensing (DAS) via fiber optics, and active seismic data to detect and characterize seismicity across the entire deformation spectrum (earthquakes, tremors, slow-slip events). These observations will be
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. The successful candidate should demonstrate scientific curiosity, rigour, initiative, and an ability to work in an interdisciplinary environment. Experience in optics, high-speed imaging, image processing
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-of-the-art optical imaging system at PhLAM. Where to apply Website https://emploi.cnrs.fr/Offres/Doctorant/UMR8520-STEGIO-003/Default.aspx Requirements Research FieldPhysicsEducation LevelMaster Degree
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microfabrication facilities, multiphoton lithography and stereolithography systems, laboratories dedicated to the development of photocrosslinkable biomaterials, advanced optical and confocal microscopy platforms
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instrumentation for the early detection of dissipation/quench, initially through voltage measurement, but other approaches (radio frequency, optical fiber, etc.) may also be considered. These developments will be
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water leaks, such as pressure/flow sensors or fiber optics, but they require sensors to be installed in advance. To complete the existing techniques, in this study, we will explore the application