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from over 50 nations, it is the largest institute of the Max Planck Society. The Department of Theoretical and Computational Biophysics (Prof. Dr. Helmut Grubmüller) is inviting applications for a PhD
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rare-earth ions, with improved quality for optical, magneto-optical and laser applications. Different growth methods will be used such as Czochralski, Bridgman and Flux methods. Numerical modelling will
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possible to perform the first ever ion pump-laser probe experiments with complex molecular systems The postdoctoral researcher's mission will be to commission the new experimental setup. This device is
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collaborative environment with projects and interactions spanning multiple labs within the group, across NIST and externally. Candidates should have a PhD in physics, electrical engineering, mechanical
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-state physics, optics, computational physics or PhD degree in materials engineering good knowledge of optics, experimental physics, electronics, solid-state physics, technology of semiconductor lasers
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multiplexed imaging, LMD7 laser microdissection, Orbitrap Ascend mass spectrometry and timsTOF fleX MALDI-2) and collaborations with world-leading proteomics and dermatology experts. This is your chance to
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embedded systems from vulnerabilities rooted in sensor physics, studying the impact of physical signals (e.g., acoustics, lasers, electromagnetic emissions) on AI and sensing systems, and innovating hardware
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and aerosol characterisation, including: -Laser diffraction -Next Generation Impactor (NGI) -Liquid chromatography-based analyses Analyse and interpret experimental data to inform iterative formulation
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from MicroCorr, a next-generation imaging platform integrating confocal laser scanning microscopy and Raman microscopy, enabling combined structural, functional, and live/dead-resolved single-cell
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 2 months ago
. Description: This opportunity involves research and development activities in the following technology areas: 1. Chip-scale stable laser systems using MEMS and nanophotonic technologies including but not