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synchrotrons and x-ray free-electron lasers. Key Responsibilities Perform electronic-structure calculations using ab initio quantum chemistry methods and software (commonly CASSCF-based approaches) Investigate a
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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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focused on advancing computational methods for synchrotron, free-electron laser (FEL), and related scientific challenges. SciQC combines expertise in mathematics, numerical algorithms, high-performance
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spectroscopy (e.g., transient absorption), including laser operation, optical alignment, and data analysis Experience in synthetic inorganic chemistry and transition metal complex photophysics Job Family
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Scholar will focus on experimental research in the field of laser diagnostics of nonequilibrium plasmas, for atmospheric reentry flow applications and for plasma-liquid interaction applications. The duties
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manufacturing capabilities, allowing us to manufacture more versatile optical systems, including lasers, cavities, frequency references and more. If successful, you will be able to join OpticsFoundry and bring
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Location: Atomic and Laser Physics, Department of Physics, Clarendon Laboratory Building, Parks Road, Oxford, OX1 3PU An exciting opportunity has arisen for a Postdoctoral Research Assistant in
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sensing data which estimate forest biomass, e.g. from airborne and spaceborne laser scanners, since no in-situ based biomass data with global coverage exist. Who we are looking for The following
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3D optical diagnostic tools. The activities would include experimental fluid dynamics, 3D PTV setting and laser handling, data post-processing, to improve the measurement and understanding of small
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Photonics Engineering (DTU Electro) has nearly 300 employees of which around 200 research different aspects of photonics. Research is performed within nanophotonics, photonic nanotechnology, lasers, quantum