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the spin and optical properties of the boron vacancy (VB) defect in hBN, in order to assess its potential for quantum sensing applications, with a focus on magnetic field detection. The objective of the PhD
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leading laboratory in optics and nanophotonics. The PhD student will benefit from: - The expertise of the team's PhD students and postdoctoral researchers, who are already involved in the development
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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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. 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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tools: (i) a photopotentiostat , to measure the injected photocharge, and (ii) an optical nanometrology strategy to quantify in situ the amount of photografted material. The objective of this PhD will be
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fluorescence microscope optimized for imaging individual cells within microtumors. Through this work, the PhD candidate will receive hands-on training in the design, implementation, and optimization of a state
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coherence time. This PhD thesis is part of a long-term compact optical clock project based on the Yb+ 435.5 nm transition frequency, with a target fractional frequency stability below 10-14 at 1 s and less
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mechanobiology for life science applications. The PhD project will be jointly supervised by Laurent Malaquin (LAAS-CNRS) and Elise Rigot (LLA-CREATIS, Université Toulouse Jean Jaurès) as part of an original Art
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passive seismic experiments (HOREX® and Full-HOREX®). These deployments, involving more than 2,000 nodal sensors, provide high-resolution imaging of the subsurface over an 80 × 80 km area to a depth of ~20