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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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Reference: 0525-24 Lancaster Physics Department and the Cockcroft Institute for Accelerator Science wish to appoint a postdoctoral research associate to work in laser- and THz-driven electron acceleration
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backgrounds are encouraged. The successful candidate will contribute to the development of the understanding of laser beam welding by working closely with industry and academia to develop an industry relevant
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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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to investigate novel concepts for high power lasers operating in the visible and ultraviolet (UV) wavelength bands. Scaling laser power in the visible and ultraviolet bands remains as one of the most significant
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for a funded PhD position investigating the acoustic control of terahertz frequency quantum cascade lasers (THz QCLs). The project is an exciting opportunity to join a large and world-renowned research
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at developing transformative light-based healthcare technologies. Detailed Description The appointed candidate will be expected to exploit our extensive ultrafast laser microfabrication facilities to develop
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A Research Associate is sought to work on laser and particle beam interactions at the Cockcroft Institute of Accelerator Science and Technology. The post holder will be primarily involved in
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Supervisory Team: Johan Nilsson, Ben Mills Project Description “Smart” phased-array lasers based on computer-controlled coherently combined optical fibre amplifiers promise to revolutionise
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technological advances that will increase the industrial use of laser cutting of carbon fibre and CFRP. Motivation Laser cutting of carbon fibres and consolidated Carbon Fibre Reinforced Polymer, CFRP, has been