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Field
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, contributing to cutting-edge research with relevance to human health. You will support ultra-structural imaging experiments using cryo-imaging techniques such as cryo-SIM and cryo–X-ray tomography, alongside
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privacy constraints. About the Project The central aim of this project is to pioneer statistical methods for high-dimensional diffusion processes under privacy constraints. While stochastic differential
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unprecedented precision, one at a time and in real time (Nature, 2010; Nature Nanotechnology, 2012, 2017; Science 2025). The project involves a combination of optical imaging, nanofabrication, data analysis, and
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-diffusion equations. They will work under the guidance of Charles Collot. They will receive funding for their travels from the FloWAS ERC project. Located in the Paris area, the AGM center gathers researchers
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, optics). Perform advanced optical and electrical characterizations. Test fabricated devices. Communicate results internally. Document processes, write technical reports, and contribute to intellectual
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the development and application of advanced optical imaging and microscopy methods. The Hillman Lab brings together researchers from physics, engineering, and biology in a collaborative and intellectually open
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-dependent spectral phase and delay. The postdoc will develop the associated spatiotemporal metrology, integrate the flying-focus optics into high-intensity beamlines and carry-out laser-plasma acceleration
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photonic integrated circuits, optical metasurfaces, optomechanics, micro and nano electromechanical systems, and associated precision measurement, quantum information and future computing applications
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implications for GGR and SRM deployment. (3) Identifying social acceptance and legitimacy, (4) Learning, diffusion and adoption in GGR and SRM technologies, (5) Implications for Sustainable Development Goals
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models of healthy and pathological aging. Skills: The successful candidate must have experience: Conducting, analyzing and publishing work using resting state fMRI/task-based fMRI/diffusion MRI methods