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crystallography at X-ray free electron lasers (XFELs) and synchrotrons. This position, funded by an NCN SONATA BIS grant exceeding €1 million, focuses on the structural dynamics and chloride transport mechanism
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. Specifically, we are looking for a colleague with experience in vision systems and vision-based control to contribute to research and development of the next-generation systems for transoral laser microsurgery
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phonons and magnetic order. The position offers access to state-of-the art ultrafast laser facilities and challenging research questions at the interface of photonics and magnetism. The successful candidate
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applications as soon as possible. Required Field(s): · Advanced fabrication process of emitting devices, mainly laser diodes . · Materials: wide-band gap nanostructure devices (mainly oxides, III
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newly created Laboratory of Material Science, Laser, and Nanotechnology under the supervision of Prof. Rashid Ganeev . The members of our laboratory work on the applications of lasers for material science
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) develops advanced optical technologies, including imaging, spectroscopy, and laser ablation methods. Our goal is to bridge these cutting-edge laser technologies with clinical practice, developing solutions
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Experience with wet chemistry, laser ablation, and clean lab procedures Demonstrated ability to conduct high-quality research and work effectively in a team Inquiries For further information, please contact
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order. The position offers access to state-of-the art ultrafast laser facilities and challenging research questions at the interface of photonics and magnetism. The successful candidate will join the
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are looking for a researcher with experience developing synthetic protocols using reactive sputtering and pulsed laser deposition and relevant materials and thin film characterization techniques. You will
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with matter and pursues applications that emerge from this research. It develops and uses ultrafast and ultra-intense lasers and laser-riven short-pulse light sources in a broad spectral range in