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-optic interaction on the micrometer scale. The recruited person will join the project from the initial stage. Initial steps are the fabrication and characterization of passive delay lines on GaN/Sapphire
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at interfaces and in the bulk. The work will involve operando electrical and optical characterizations, spatially resolved analyses of performance and degradation mechanisms, and the development or adaptation
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optics and the physics of interacting many-body quantum systems is essential. Familiarity with numerical simulation techniques for many-body quantum models is also required. Skill Requirements
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, the assembled heterostructures will be characterized by optical methods at the C2N laboratory using Raman spectroscopy, polarized Raman spectroscopy, photoluminescence, and second harmonic generation
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high energies. One promising lead on this topic is the use of hydrodynamic optical-field-ionized (HOFI) channel in the plasma target to allow for longer and more stable laser-plasma interaction. Where to
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utilize the expertise of the ILV (Laboratory of Optical Laboratory) and model systems based on previous studies by partners. • Characterizing these new assemblies in air or at the liquid-solid interface
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more diluted source cooled by lasers, has a disadvantage linked to the effect of interatomic interactions, which we will study. A fibre-optic bench designed to control the gravimeter will be delivered
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engineeringYears of Research Experience1 - 4 Additional Information Eligibility criteria We are seeking a candidate with a PhD who: - has a strong background in biophysics, optics, quantitative biology and related
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the Organic Chemistry for Materials, Biology, and Optics (COMBO) team, led by Dr. Gilles ULRICH. The COMBO team is located on the premises of the Strasbourg School of Chemistry (ECPM) at the University
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Experience1 - 4 Research FieldGeosciencesYears of Research Experience1 - 4 Additional Information Eligibility criteria Python programming to automate processing chain Handling optical, radar, and lidar imagery