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industry. Our group combines precision experiments, advanced imaging, and modeling to uncover the physics of tin droplets under extreme conditions of laser irradiation. We have established a strong track
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and engineering for radiation mitigation of complex microelectronics. The theoretical research will be complemented by using irradiation sources available at ESTEC (Co-60, Cf-252 and pulsed laser
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behaviour of (new) materials and molecules. This is achieved by exposing them to extreme conditions, including very high magnetic fields and powerful free-electron lasers. HFML-FELIX operates an international
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timescale do short-range magnetic correlations evolve into long-range ordered spin states? While equilibrium theories can describe how exchange correlations stabilize magnetically ordered ground states, they
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clocks. Join Us! Optical clocks have reached a precision of better than 10-18, which enables them to resolve the relativistic time dilation by only 1cm height difference in the gravitational field of earth
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Are you passionate about improving wireless networks and developing technologies for 6G? We foresee a future where lasers will light up the sky to enable high-bandwidth and secure communications
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theories can describe how exchange correlations stabilize magnetically ordered ground states, they do not capture the non-equilibrium kinetics of ordering, nor the ultimate timescale on which order emerges
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-ICP-MS, 1 ICP-MS and 1 ICP-OES instruments and two laser systems for in situ analyses. A new metal free clean laboratory is to be installed within new VO Research Building. The groups expertise with
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Manager. The Earth Observation missions currently in development at ESA include a number of projects featuring high data rates with very stringent availability, timeliness and responsiveness requirements
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advanced molecular imaging technologies, including MALDI Mass Spectrometry Imaging (MALDI-MSI), DESI-MSI, transmission-mode MALDI-MSI, Nanoscale SIMS, Laser MicroDissection (LMD) and high-resolution mass