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Field
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at integrating femtosecond laser micromachining with monolayers of twodimensional materials, demonstrating the possibility of (i) deterministically writing quantum light sources by the induction of localized
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imaging techniques. The successful applicant will be part of a multidisciplinary team constructing a new laser laboratory at the Rutherford Appleton Labs in Harwell, home of the most powerful femtosecond
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laboratory at the Rutherford Appleton Labs in Harwell, home of the most powerful femtosecond lasers in the UK, and of the Rosalind Franklin Institute (RFI), a new UK research institute with a focus in
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of the results...) The ideal candidate should have carried out experimental activities on one or more laser facilities, preferably femtosecond laser facilities with a peak power of 100TW class or higher
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The Research Fellow will work on a project to conduct the research on development of high-energy femtosecond fibre lasers for multiphoton imaging applications. The project is to introduce innovative
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Harwell, home of the most powerful femtosecond lasers in the UK, and of the Rosalind Franklin Institute (RFI), a new UK research institute with a focus in biological imaging using several complementary
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radiation with pulse durations in the femtosecond to nanosecond range. By using laser wavelengths in the deep ultraviolet range (150-300 nm), structure sizes in the range of a few hundred nanometres can be
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characterization techniques including transport, single crystal diffraction, and optical spectroscopy, • Experience in femtosecond laser operation and laser pumping experiments. • Experience in quantum emission and
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Rutherford Appleton Labs in Harwell, home of the most powerful femtosecond lasers in the UK, and of the Rosalind Franklin Institute (RFI), a new UK research institute with a focus in biological imaging using
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of processes selected from the following: additive manufacturing (to yield micro-structures), subtractive processes based on electrochemical etching and photolithography and finally femtosecond laser ablation