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researchers. Combustion Physics web page Subject description The proposed research work consists in developing and applying some advanced laser imaging techniques for determining the temperature on hot surfaces
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Description of the offer : Several postdoc positions are available within theory of magnetism, with specific focus on: theory and modeling of light-induced spin and orbital currents, theory of laser
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superalloys to study additive manufacturing. The main processes currently studied at the division include gas metal arc welding, plasma welding, laser welding, friction welding, additive manufacturing (AM) with
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and free electron lasers. The main goal is to move from the commonly investigated long-wavelength magnons, dominated by magnetic dipolar coupling, to the short-wavelength, exchange dominated magnons
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medical applications. Emphasis will be given to experience with experimental methods (Particle Image Velocimetry, Laser Induced Fluorescence). The successful applicant should be strongly motivated, have the
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or materials science with knowledge and experience in operating and designing laser-based materials characterization techniques. We also think you have documented experience using Fabry–Pérot interferometers
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designing laser-based materials characterization techniques. We also think you have documented experience using Fabry–Pérot interferometers, for example when performing BLS experiments. You are a self
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computationally-based modelling within condensed matter physics. Currently within the group there is a strong focus on: theory and modelling of electrically induced spin and orbital torques, theory of laser-induced
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-ray field and on the use of synchrotron light facilities and free-electron lasers. In most of these activities, theory and modelling are important parts. The work environment is flexible, inclusive and
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hyperspectral drone images, optical satellite images, and laser scanning data. The work will include developing automatic methods to extract information from remote sensing data and statistical methods