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and distributed sensing applications over optical fibers. The work will involve advanced manipulation of the phase of ultra-stable lasers, the development and implementation of advanced modulation and
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the MULTIMOC project funded by ANR ASTRID and as part of the GRAFIC project funded by the Nouvelle-Aquitaine Region. The aim is to develop an all-fiber laser source end component, whose special feature will be
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expertise in the field of laser stabilization, frequency combs, phase-locked loops, proven by relevant publication track record, experience in the field of fiber lasers and nonlinear optics, ideally
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, carbon conversion, and material quality while enabling the manufacture of high-functionality bulk fibers and wires with world-leading mechanical strength and electrical and thermal conductivity. The
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quantum systems. However, the performance of these laser systems is still far from what is possible using tabletop free-space or fiber laser systems. During the ERC StG LASIQ we will research novel photonic
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or fiber laser systems. During the ERC StG LASIQ we will research novel photonic thin-film materials to create beyond state-of-the-art on-chip laser systems. This work will build on the novel solid
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Preferred Experience, Skills, Training/Education: Preferred Qualifications: Direct, prior hands-on experience handling and testing active semiconductor laser devices (e.g., microring lasers, VCSELs, laser
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of the following tasks: 1) Laser-based instrumentation design, fiber coupling, and optical characterization. 2) Experimental investigation and computational model simulation of laser-induced bubble dynamics and