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to experimental design, modelling of temporal encoding schemes, and data analysis, within a highly interdisciplinary environment combining optics, photophysics, signal processing and biology. The person will
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, culture, and genetic manipulation of mouse embryos; biophysical techniques such as high-resolution microscopy, optical tweezers, and microfluidics; as well as image and data analysis. The Institut Curie is
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, and analysis of multicolor images. - Advanced optical microscopy (nanoscopy) - Image acquisition and analysis - Microfluidics - Fluorescent labeling protocol - Multimodal characterization
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for homogeneous photocatalysis. Physico-chemical characterization Structural, optical, and electronic analysis of materials (spectroscopies, microscopies, electrochemistry, etc.) to establish structure–property
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standard solar cell manufacturing processes. The project will also include optical simulation tasks and advanced luminescence characterization experiments. The postdoc will also contribute to the design of
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learning simulations - Growth of metallic heterostructures by sputtering / ALD - Optical and e-beam lithography - Ion beam and reactive etching - Fabrication of skyrmion based nano-devices - Electrical
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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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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