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Field
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in nonlinear X-ray-matter interactions and ultrafast diffraction/imaging are targeted with this position as Postdoc in the MID group. For our MID group, we are looking for a Postdoctoral researcher for
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and synchrotron-based experiments to study the dynamics of light-induced phase transitions on atomic and nanoscopic length-scales driven by optical and phononic excitation. The focus will be
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spacecraft and associated data governance challenges; obsolescence of traditional ways to deploy and sustain ground segment systems; new forms of space communications, such as optical and quantum technologies
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‑on experience in single‑molecule microscopy, skills in optics or photonics, and proven ability in developing software for imaging analysis, particularly using Python. Your ability to work independently while
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will have a strong background in engineering—biomedical, electrical, or mechanical—with expertise in optics, imaging systems, or device development. Our research focuses on advancing molecular and
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, collecting data on small-scale movements of the eyes during visual tasks using high-resolution in vivo retinal imaging. The post is full time for 12 months or until the grant end date of 30 June 2027
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-reviewed journals in biology-relevant fields. Preferred Qualifications Prior experience with brain slice patch-clamp recordings and optical imaging. Excellent writing skills with experience in writing grants
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boiling, aiming to (i) track transient liquid fronts at Critical Heat Flux and (ii) assess heat transfer during surface drying and rewetting, using optical fiber thermal sensing and a high-speed IR camera
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maintain end-to-end EO data processing pipelines, from sensor calibration to the extraction of geophysical variables. Implement machine learning and image processing techniques to fuse optical and SAR data
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improvements. Examples include optimizing the squeezing of the vacuum to minimize quantum noise, a prototype cryogenic interferometer, using machine learning for nonlinear feedback control, devising techniques