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device fabrication techniques, including sputtering, evaporation, electron-beam lithography, optical and laser lithography, reactive-ion etching and plasma etching - Physical characterization techniques
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Institute of Theoretical Physics, Chinese Academy of Sciences, Personnel Office Position ID: ITPCAS-Personnel Office-SRA [#31194] Position Title: Position Type: Postdoctoral Position Location
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Max Planck Institute for Multidisciplinary Sciences, Göttingen | Gottingen, Niedersachsen | Germany | 2 months ago
description Single-molecule X-ray scattering experiments with free-electron lasers offer a new route to the structure determination of biomolecules. Due to the super-low signal-to-noise-ratio, computing
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molecular qbit control. Requirements: University degree (Master or equivalent) in Physics or (Physical) Chemistry and doctoral degree. Desirable: Strong knowledge in the application of EPR spectroscopy and at
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areas: quantum optics/optomechanics, AMO physics, advanced laser spectroscopy and interferometry Strong hands-on skills in experimental research (optics lab), including automation of data acquisition and
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sensing techniques for precision studies of rare molecules in fundamental physics. The successful candidate will develop methods to manipulate, trap, and interrogate rare molecular species using laser
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a multi-metal lidar and doing regular quantum remote sensing of atoms in the MLT. The new, flexible dye laser systems require hands-on work in optics (spectroscopy, laser physics) and software
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of ultrasonic measurements on ultramafic rock specimens by laser Doppler vibrometry 30% Processing the ultrasonic data 10% Writing reports and manuscripts; presenting results 10% Working with project personnel
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Position Requirements Ph.D. in Materials Science, Physics, Electrical Engineering, Applied Physics, or a related field (completed or soon-to-be-completed) Demonstrated expertise in nano- and mesoscale
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of the Next Generation Gravity Mission (NGGM) will rely on the high-accuracy measurement of the variation in inter-satellite distance due to the time-varying gravity field via a laser tracking instrument and