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100%, Zurich, fixed-term The Experimental Quantum Engineering (EQE) group at ETH Zurich and PSI seeks highly motivated postdoctoral researchers to work at the intersection of quantum optics and
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facility into which a hydrogen sequential combustor can be inserted. Laser-based optical diagnostics and plasma emission spectroscopy will be used to experimentally characterize the effects of repetitively
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culture. Experience with microfluidics, optical microscopy, and biochemical assays will be highly beneficial. In-depth knowledge of kidney physiology and pathophysiology, and knowledge of standard molecular
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bioengineering and biotechnology or related fields, with a preference for experience with microfluidics and advanced in vitro models, transport across endothelial barriers, and viral vectors. Experience in optical
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fields). High-pressure experimental skills using a laser-heated diamond anvil cell apparatus including the ability to develop the optical, spectroscopic, or infrared laser heating system are highly
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sensing with levitated particles Cavity-mediated entanglement Brillouin scattering in levitated materials Development of hybrid rf-optical traps Job description We are looking for highly motivated postdocs
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well as their characterization using standard lab-based characterization methods (optical and scanning electron microscopy, magnetization measurements, Kerr microscopy) as well as advanced synchrotron x-ray techniques
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spectroscopy, ultrafast dynamical processes, and ferroic materials. Its aim is to explore novel states of matter generated and/or detected in materials with strong electronic correlations by optical stimulation
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microelectrode arrays (HD-MEAs). The overall goal of this project is to combine advanced optical methods for light-stimulus shaping with high-spatiotemporal-resolution electrophysiology and cutting-edge genetic
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using cleanroom processes and their behaviour will be tracked with a dedicated optical microscope. Furthermore, you will develop new methods to control the motion of the robots in different environments