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Research Framework Programme? Not funded by a EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Quantum nanoelectronics investigates the behaviour
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expected to be incremental. This calls for a completely different paradigm for accurately simulating turbulent flows at extreme Reynolds numbers – either using classical hardware or upcoming quantum
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consist in the development and use of new magnetization probes for the pulsed magnetic fields generated at the LNCMI-Toulouse. With this new setup, magnetization experiments will be performed on quantum
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and extend these cryo-electronic platforms to demonstrate coherent charge and spin control in silicon quantum dot arrays. In particular, the project will focus on the implementation of coherent electron
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platform for the study of artificial quantum materials based on large semiconductor quantum dot lattices. By combining extended one-dimensional and bilinear arrays with high-sensitivity RF admittance
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physics and quantum chromodynamics. Knowledge of computer programming is a plus. Website for additional job details https://emploi.cnrs.fr/Offres/CDD/UMR3681-CAMFLO-002/Default.aspx Work Location(s) Number
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superconducting qubits and their scaling to implement initial quantum error correction experiments. You will have access to world-class facilities including a clean room equipped with a 100 keV e-beam writer and
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many-body quantum systems, non-equilibrium impurity dynamics, Bose-Fermi mixtures and other relevant problems in the field. - Fundamental theoretical research - Analytical modeling - Numerical
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2030), dedicated to the development of high-performance cryogenic technologies for quantum technologies, and more specifically to ultra-low-temperature thermometry in the millikelvin range
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solid state physics - superconductivity/ quantum devices - clean room micro-nano fabrication - optical setups in a weak photon flux regime - low temperature and/or high frequency transport measurements