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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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of spectral diffusion on the optical linewidths will be rigorously characterized, along with the photo-dynamics of the individual emitters under optical resonant excitation. The second goal will be
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sectioning approaches. The potential complementarity of these two strategies will also be investigated. Once the clearing protocol has been optimized, the candidate will characterize the residual optical
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they contain, is a major challenge for molecular data storage. Nowadays, the main characterization techniques are based on mass spectrometry or electrical current detection. Despite their high sensitivity
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into cavities and waveguides for applications to optical quantum information. In this context, the PhD project will consist of optical characterization and quantum optics experiments based on single-photon
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(ILM), interacting with PhD students, postdocs, and master's students on related topics. We seek a motivated candidate holding a master's in physics, with skills in ultrafast/nonlinear optics or soft
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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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new pyranopyran-based building blocks, as well as the quadrupolar chromophores obtained by adding two electron-withdrawing groups A, for next-generation OPV and OLEDs. After synthesis, optical and
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-renowned expertise in the field of Time and Frequency metrology, with access to the OSCILLATOR-IMP platform, which includes three active Hydrogen Masers, three Cs clocks, as well as optical frequency combs