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research concerning determination of the concentration and spatial distribution of (ultra)trace elements in materials of both biological and synthetic origin using laser ablation – ICP-mass spectrometry (LA
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electron lasers (XFEL). Optical phase change materials can be reversibly switched between amorphous and crystalline states on fast timescales and are enabling materials for emerging photonic computing
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Science and Engineering Dynamics and Controls Systems Energy and Climate Fluid Mechanics Lasers and Applied Physics Materials and Mechanical Systems Robotics. This position is not eligible for sponsorship
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of optics or imaging: Fluroescent microscropy Two-photon imaging or stimulation Holography using Spatial Light Modulators Fluorecent lifetime imaging Femtosecond lasers Familiarity with neuroscience
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English (written and spoken). Strong expertise in cell culture techniques including co-cultures and organoids. Strong expertise in high-resolution laser scanning microscopy and image analysis. Expertise in
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. These instruments may combine optical components, laser and spectroscopic methods, spin-control or magnetic-resonance techniques, electronics, data-acquisition hardware, and software control. The candidate will use
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Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt | Stein bei N rnberg, Bayern | Germany | about 2 months ago
microelectronics, optical systems and lasers, ultrasound or sensor technologies, precision instrumentation, mechanical design and Computer-Aided Design (CAD), biomedical imaging systems. Programming experience in
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Job description: DESY The European XFEL is the most powerful X-ray Free Electron laser in the world. The accelerator complex, including the 1.5 km long superconducting accelerator, is operated and
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significantly improved optical quality, enabling long-distance light transmission, emerging mid-infrared lasers and light sources, with potential use across industries including defence, mining, medical devices
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phase change materials used in photonic devices, using synchrotron X rays and X ray free electron lasers (XFEL). Optical phase change materials can be reversibly switched between amorphous and crystalline