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Field
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? H2020 / SME Innovation Associate Reference Number 101135904 Is the Job related to staff position within a Research Infrastructure? No Offer Description Interested in a European project bridging laser
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Supervisory Team: Prof Johan Nilsson, Dr William Kerridge-Johns Project description: This project, focussing on high-power laser architectures, will contribute to a major Ministry of Defence (MoD
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approach in laser ultrasonic techniques applied to elastic waveguides Non-contact laser ultrasonic techniques offer a unique tool to generate and measure elastic guided waves in solids. From these waves
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industry and science – a Project Apollo of the digital age. EUVL is powered by light that is produced in the interaction of high-energy CO2-gas laser pulses with molten tin microdroplets. The use
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monitoring and sensing of the fundamental physical phenomena occurring during laser-material interaction, in order to optimize laser-based material processing techniques for sustainable manufacturing
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processes. This project is part of this context by developing a new process for optical fibres containing nanoparticles. The potential of this new generation of fibres as lasers and sensors has already been
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Vacancies PhD position on innovative metrology techniques for high power laser applications Key takeaways We are looking for a PhD-candidate to strengthen our highly motivated and multidisciplinary
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the sustainable companies and societies of the future. The Division of Product and Production Development at Luleå University of Technology wants to employ two PhD students who want to work with laser
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Supervisors: Dr. Tom Goffrey (Physic), Prof. Tony Arber (Physics) Summary: The recent successes at the National Ignition Facility in achieving fusion gain from laser-driven implosions is major step
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Institut Lumière Matière ILM- UMR 5306 CNRS / Université Claude Bernard Lyon 1 | Villeurbanne, Rhone Alpes | France | 25 days ago
-acoustic techniques present an alternative approach. These techniques utilize laser light to generate and probe high frequency ultrasonic waves. In this project, we propose to leverage opto-acoustic schemes