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light sources, quantum frequency conversion and quantum processing nodes. The current position will be within a project aiming at developing quantum network nodes with laser cooled atoms, including
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. The successful candidate will be joining the Quantum Photonics with Solids and Atoms group led by Prof. Dr. Hugues de Riedmatten. The group has experience in quantum technologies for quantum networks, including
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fluorescence microscopy, Confocal laser scanning microscopy, Cryo-TEM and/or TEM, SEM, DLS, NTA, Zeta potential, SAXS/SANS, Fluorescence spectroscopy…). Experience in quantitative image analysis and microscopy
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software and 3D printing. Basic electronics and laboratory instrumentation skills. Scientific data acquisition and instrument automation. Knowledge of laser safety procedures. Language requirements A solid
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designed and optimised computationally. They will then be manufactured using laser powder bed fusion (LPBF) and tested under mechanical and fatigue loading. The experimental results will be used to improve
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candidates with a solid technical background and strong motivation to work with integrated photonics in a dynamic R&D and pre-industrial environment. Key responsibilities: Design and simulate novel PICs in
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. The position combines conception and design-oriented work, coordination, and experimental lab work, and is ideal for candidates with a solid technical background and strong motivation to work with integrated
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Condition User Facility,Advanced Attosecond Laser Infrastructure, etc.) Applied physics (including: advanced functional materials, applied magnetism, optoelectronic and photonic devices, sensing technology