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implementation enabling the localisation of single molecules using a temporal approach thanks to an original shaping of the illumination field. This paradigm shift in the process of localizing single molecules
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on local fluid flows. Mapping these, as well as monitoring oxygen and pH, is therefore essential. Local fluid velocity is usually determined using particle image velocimetry (PIV), while local [O2] and pH
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experiments: surface plasmon resonance, quartz microbalance, conventional fluorescence microscopy, etc... The Fresnel Institute develops adaptative microscopy techniques and super-resolution microscopy. In
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, the candidates will explore the origin, diversity and consequences of chaotic mixing in porous and fractured media. He will develop a new generation of imaging techniques coupling laser induced fluorescence
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paradigm shift in the design and administration of future drugs using nanotechnologies. However, despite their undeniable advantages (e.g., increased biocompatibility, modularity, versatility of payloads
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important subject for numerous fields (medical imaging, acoustics, seismology, stellar physics, …). The experiments that we pursue make use of an original medium: a laser-cooled atomic cloud. The peculiar