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In this internship, you will work on precision laser spectroscopy, developing a setup to stabilise a 461 nm laser to a strontium hollow cathode lamp. You will gain direct experience with frequency
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of a water absorption band. Consequently, 3 µm lasers are highly relevant for applications in spectroscopy, greenhouse gas and pollutant detection, industrial process monitoring (hydrocarbons, combustion
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on Smart Fibre-Optic High-Power Photonics (HiPPo). The HiPPo programme (https://www.hippo-laser.co.uk/ ) is focused on understanding how to control the properties of fibre lasers, to go beyond the “fixed
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Computer-Assisted Laser Microsurgery,” IEEE Transactions on Medical Robotics and Bionics, https://doi.org/10.1109/TMRB.2024.3468385 , 6(4), pp. 1423-1435, November 2024 ESSENTIAL REQUIREMENTS PhD degree in
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to the electrochemical reaction being studied. - Optical simulations of plasmons in the thin films. - Design of a specific electrochemical cell to allow normal electrochemical operation under infrared irradiation, without
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under-operation, laser-pumped metastable states. POSITION DESCRIPTION The selected candidate will be part of the group of Dr. Valentina Bisogni, focusing on the electronic investigation of novel van der
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Computer-Assisted Laser Microsurgery System Based on Rotary Voice Coil Actuators,” IEEE Transactions on Medical Robotics and Bionics, Print ISSN: 2576-3202, Online ISSN: 2576-3202, https://doi.org/10.1109
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efficient material processing techniques that combine high optical quality with utmost precision through direct laser writing. This capability, responding to challenges in nanofabrication, could unlock new
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process for thick biopolymer films, studying the microstructure of these films using a femtosecond laser to integrate various functions (separation, sorting, concentration, capture, detection), and
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laser structures for backreflection-resilient operation Develop and optimize silicon plasma dispersive devices for on-chip optical isolation Fabricate heterogeneous lithium tantalate photonic isolators