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Field
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room has unique equipment for heterogeneous laser integration and micro-transfer printing. You will be responsible for: Developing novel fabrication methods for solid laser waveguides (e-beam lithography
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-transfer printing. You will be responsible for: Developing novel fabrication methods for solid laser waveguides (e-beam lithography / dry-etch optimization / thin-film development) Testing and characterizing
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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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(laser, X-rays, electrons, ions, etc.). It accounts for the hydrodynamic evolution of fluid or solid materials (including mechanical effects), energy deposition of different types, thermal conduction
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than 18,500 people, including over 14,000 students and 4,000 researchers from more than 120 different countries. Postdoc: Networked Systems Abstractions Lab (LASeR) Mission The EPFL Networked Systems
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, the candidate should have a solid background in construction and operating rf ion traps, CW laser systems including control of output powers, polarization states, linewidths and frequencies, as
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optical tweezers. Recently, we have extended this effort by building a new experimental apparatus capable of laser cooling and manipulating dysprosium atoms. The project will utilise this new apparatus. We
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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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industry. Our group combines precision experiments, advanced imaging, and modeling to uncover the physics of tin droplets under extreme conditions of laser irradiation. We have established a strong track
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Solid theoretical understanding of fiber optics, laser physics, and heat transfer. Good written and oral communication skills Proficiency in BPM and COMSOL is highly essential. Competent in analytical