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prototype ion trap for frequency metrology, demonstrating ion trapping and laser cooling for the first time at FEMTO-ST. A microfabricated SE ion trap was produced at the local MIMENTO facility, that recently
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this context, we explore the paradigm of waveguide quantum electrodynamics by trapping atoms in the vicinity of photonic crystal waveguides supporting slow-light modes. This enables strong atom–photon coupling
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dedicated, low-energy electron beam ion trap (EBIT) optimized for the production of highly charged ions of light nuclei that remain beyond the reach of storage rings. This EBIT, a central element of the
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laser beams, in the context of future laser fa-cilities for inertial fusion. It will be carried out within the theory group TIPS (Theory, Plas-ma Interpretation & Simulation), in close collaboration with
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performance with low-cost and scalable fabrication. Their rapid rise has propelled them to the forefront of next-generation technologies, with applications spanning high-efficiency photovoltaics, light-emitting