35 computer-security "https:" "https:" "https:" "https:" "https:" "https:" "Dr" "Keele University" Postdoctoral positions at Institute of Photonic Sciences
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. The successful candidate will be joining the Neurophotonics and Mechanical Systems Biology group led by Prof. Dr. Michael Krieg who is searching for highly motivated researcher to join his team and investigate how
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to develop novel strategies that contribute overcoming critical resource bottlenecks in energy devices. The successful candidate will be joining the CO2 Mitigation Accelerated by Photons group led by Prof. Dr
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. The successful candidate will be joining the Organic Nanostructured Photovoltaics group led by Prof. Dr. Jordi Martorell to undertake research in the characterization of thin film solar cells based on organic
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. The successful candidate will be joining the Quantum Information Theory group led by Prof. Dr. Antonio Acin and will be working on on the performance of quantum key distribution protocols over existing networks
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. The successful candidate will be joining the Molecular Nanophotonics group led by Prof. Dr. Niek van Hulst. Key responsibilities Contribute to Project FastTrack, to track energy (exciton/charge) transport in
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. The successful candidate(s) will be joining the Organic Nanostructured Photovoltaics group led by Prof. Dr. Jordi Martorell. The successful candidate(s) will be joining the Nano-structured Organic Photovoltaics
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. The successful candidate will be joining the Quantum Photonics with Solids and Atoms group led by Prof. Dr. Hugues de Riedmatten. The successful candidate will be joining the Quantum Photonics group led by Prof
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. The successful candidate will be joining the Quantum Information Theory group led by Prof. Dr. Antonio Acin and will be working on quantum information theory and its applications to other fields, from
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. The successful candidate will be joining the international QTWIST program that includes Prof. Jarillo-Herrero (MIT) and Amir Yacoby (Harvard) as well as research groups of Prof. Adrian Bachtold, Prof. Carmen Rubio
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computers and, as a result, many of them remain poorly understood. UItracold atoms trapped in optical lattices provide a pristine realization of the Hubbard model and hold the promise of solving many of its