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Field
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and classical physics as well as between quantum and bio-molecular science. We develop universal matter-wave interferometry in the limit of high mass and high complexity, from organic molecules to metal
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promising solution for scalable offshore applications where conventional fixed-bottom systems are impractical. These systems consist of multiple interconnected modules subjected to waves, current, and mooring
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and classical physics as well as between quantum and bio-molecular science. We develop universal matter-wave interferometry in the limit of high mass and high complexity, from organic molecules to metal
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communication, where optical wireless links may surpass traditional millimeter-wave radio communications, ensuring efficient and reliable connectivity. If you're passionate about transforming the landscape
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My primary areas of research activity are two fold: first, studing thermonuclear (X-ray) bursts from accreting neutron stars; and second, searches for optical counterparts of gravitational-wave
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of their users in the Swiss context. The successful candidate will lead the data collection of a two-wave panel study with the general population in Switzerland. The PhD project will then be extended by internal
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lead the data collection of a two-wave panel study with the general population in Switzerland. The PhD project will then be extended by internal funds or by funding through a project grant to examine the
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for the study of critical aerodynamic phenomena such as flow separation, transition to turbulence, shock wave boundary layer interactions in the supersonic and hypersonic regimes. The Aerodynamics laboratories
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systems – so-called neuromorphic computing. Magnonics offers a rich and tuneable platform for wave-based information processing, where interference and nonlinearity can naturally implement neuromorphic
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combination of multi-wavelength observational data with sophisticated simulations. I am a member of various collaborations, including Australia's OzGrav Centre of Excellence for Gravitational-wave Discovery