65 photonic positions at GRK2376 "Confinement Controlled Chemistry" in United Kingdom
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faster modulation and reduced power consumption. TAMSELs have the potential to completely disrupt the sensing and datacentre communications markets. You’ll be joining a team of photonics experts, led by Dr
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Supervisory Team: Ioannis Zeimpekis Project description: Enabling integrated and free space photonics with advanced reprogrammable materials. The current increase in data generation is expected
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faster modulation and reduced power consumption. TAMSELs have the potential to completely disrupt the sensing and datacentre communications markets. You’ll be joining a team of photonics experts, led by Dr
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addition to the research project outlined below you will receive substantial training in scientific, technical, and commercial skills. Nonlinear parametric photonics is used to control quantum systems as well as sources
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2324315 - Post-Doctoral Research Assistant in Photonics Technologies - High Power Laser Applications
View All Vacancies Centre for Photonics Expertise Location: St Asaph Salary: £32,982 to £38,206 per annum Closing Date: Wednesday 24 April 2024 Reference: 2324315 Join Our Cutting-Edge Research
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Nonlinear and quantum properties of hybrid light-matter interacting states in semiconductor photonic structures. PHY-09-Krizhanovskii School of Mathematical and Physical Sciences PhD Research
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Description of the offer : Combining concepts from the field of opto-electronics, photonics, and functional magnetic materials, this project aims to produce novel devices for fast, precise, and
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lanthanide clusters) in the area of luminescence, specifically two-photon processes – upconversion and downconversion (quantum cutting). Project Description We are searching for a highly motivated individual
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challenge of the increase in photon flux brought by the Diamond II upgrade. The increase in photon flux will have a big impact in crystallography and other techniques that currently use photon counting area
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are gold for medical diagnostics and cancer treatment; iridium and platinum for clean energy (hydrogen); and silicon for photonics and solar. They will be characterised by state of the art methods including