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the past few decades, remarkable progress has been made toward constructing functional quantum processors. However, to build fully capable quantum computers and networks, a wide range of complementary
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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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within the Solid-state Quantum Technologies team (S2QT – https://solidstatequantumtech-l2c.fr/ ) of the Charles Coulomb Laboratory in Montpellier. The doctoral work will be supervised by Vincent Jacques
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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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to the development of a new nanophotonic platform compatible with rubidium (Rb) atoms and to make it available for studies of quantum electrodynamics in a waveguide configuration. The successful candidate will
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. The activity of the Research axis 3 falls into the domain of quantum nanophotonics. We are first interested in nanosources of light: - colloidal semiconductor nanocrystals based on CdSe, at the single object
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that focuses on the manipulation of collective spin excitations in magnetic materials. The use of magnons for classical or quantum information transport is being considered as a long-term prospect. In
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of the complex III-V semiconductor stack forming the laser and transferred onto a 300 mm substrate by molecular bonding. A simplified example of the laser structure is: InP (4 µm) / GaAlInAs quantum wells (400 nm
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evaluating the performance of a quantum bit. We have recently proposed a new type of qubit where information is stored in the mechanical displacement of a carbon nanotube, exploiting its coupling with a two