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to develop a disruptive laser technology to address realworld applications in health science and quantum technology. The basic concept relies on the exploitation of low phonon rare-earth-doped fluoride
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spectroscopy experiments, as well as coherent acoustic phonon generation measurements The postdoctoral position will be carried out within the Quantum Optics in Semiconductor Nanostructures Group (GOSS
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out ab initio calculations using Quantum ESPRESSO/ EPW,/YAMBO/VASP on hBN supercells containing various defects, in order to evaluate their formation energies, electron–phonon couplings, and optical
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- supervising and straining intern(s) - writing reports and articles This project will be pursued within the team “Solid-State Quantum Technologies” at the Laboratoire Charles Coulomb (L2C, UMR5221) in
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the CRYONEXT project. This program is part of the national strategy for quantum technologies. The aim of the CRYONEXT program is to secure France's supply of high-performance cryogenics systems for quantum
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and guidance system for these micro-swimmers, interacting with real-time optical visualization in a microfluidic network. • Study of the fidelity of the movement of micro-swimmers to the set trajectory
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Information Eligibility criteria Cold atoms quantum optics laser cooling of Ytterbium writing of scientific paper Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7010-ROBKAI0-021
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either laser and optical physics, particle beam physics, strong-field QED or plasma physics is recommended. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR7639-SEBCOR-001
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epitaxy and of characterizing their structural, morphological, electrical and optical properties, assessing in particular their stability under ambient conditions. Once the growth halide perovskites
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, quantum effects and magnetism” and the “Acoustics and optics for nanoscience and quantum physics” groups at the Institute of NanoSciences in Paris (INSP), which is part of the science faculty