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are looking for a SASEAF Postdoctoral Fellow to develop hybrid plasmonic–photonic nanostructures that enhance solid‑state single‑photon emitters, covering fabrication using direct laser writing (DLW), optical
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active crystal – rare-earth (RE) doped sapphire (REDS). The EIC-funded project’s objective is to enhance laser technology performance through creating functionalised REDS thin-disks as new optical
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fs laser direct-write and optical cavity integration. To setup and align optical beamlines/setups for home-built micro-transient optical spectroscopy experiments. To conduct micro-transient absorption
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implement nanophotonic devices such as topological lasers and detectors and waveguides. Develop and validate nanophotonic devices such as lasers and detectors and waveguides. Collaborate with
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project “PRICE-SCM (p owder amor phisation usi ng shoc k wave s for s upplementary c ementitious m aterials production)”, ran in collaboration between the University of Exeter and the UK Central Laser
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undertake research validating and developing new approaches to optimise various aspects of intense laser interaction with matter to reach the conditions for effective non-thermal fusion burn of boron fuels
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quantum dot hybrid silicon lasers, silicon plasma dispersive devices, and heterogeneous lithium tantalate photonic isolators. Key Responsibilities: Design and simulate O-Band quantum dot hybrid silicon
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well as optical and laser setups Develop and implement protocols for quantum computing and quantum sensing experiments Collaborate closely with a multidisciplinary team of PhD Students, technicians, and engineers
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lasers to atomic transitions, fiber optic design and operation, multilevel rate equation simulations, and careful characterization of systematic effects. Key responsibilities will include but are not
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Postdoctoral Fellow Position in Quantum Optics and Laser Sciences Title: Postdoctoral Fellow, Experimental Physics Appointment Status: Non-tenure track Department: Department of Physics, Indiana University