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Do you want to contribute to cutting-edge research in nanoscale optical manipulation and sensing? Join us at the Division of Nano- and Biophysics, at The Department of Physics and Astronomy, and
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not ready for non-expert users. The goal of the project is to develop both the previously demonstrated X-ray microscope mode and the holo-tomography mode. This includes developments of software
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-destructive evaluation techniques, including optical and laser-based metrology, industrial X-ray computed tomography (CT), and ultrasonic sensing, will be used to monitor process stability and detect defects
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in large pre-trained models (vision-language models), generative models (flow matching, diffusion), simulation-based inference, and robust and active learning. The group has a wide network of
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-free inference, normalizing flows, flow matching or diffusion models is meriting. Experience in particle physics, in particular with collider simulation tools (e.g., MadGraph, Pythia, Delphes
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fraction of the user base is studying batteries and battery materials. This X-ray Diffraction – Computed Tomography (XRD-CT) postdoctoral research position is hosted by the Division of Solid Mechanics
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X-ray computed tomography (CT) in both interrupted and in situ test setups. Initial studies will be carried out using in-house microCT facilities and later extended to synchrotron experiments in
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collaboration with Westinghouse and Uppsala University. You will lead research efforts using experimental and computational methods to evaluate the fission product diffusion kinetics and the formation of the high
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-field fracture modelling, contact and micromechanics of particulate or composite materials, mechanical testing and X-ray tomography, and programming (e.g. Python, C++ or Fortran). An innovative mindset
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Science and Nanotechnology, Atomic/Molecular and Optical Physics, Complex Systems and Computational Physics, Biophysics, and Plasma and Space physics. The Department is now seeking a postdoctoral researcher