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Field
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operations, senior scientists within the IC annually pinpoint vital research topics spanning diverse disciplines, from artificial intelligence, quantum computing and sensing, biotechnology, and energy and
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. The post is offered at a competitive salary (Grade 6, Spine Point 33 on the KCL salary scale), and includes provisions for travel money, computer equipment and academic and leadership training. This is a
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Research Assistant/Associate in Photonics Integration of Graphene and Related Materials (Fixed Term)
such as on-chip optical routing, flexible optoelectronics, light emission, optical sensing and quantum communications. This is an ambitious research program, with a strong interdisciplinary nature, across
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of novel organic mixed ionic/electronic conductors leveraging AI, quantum chemistry, and molecular dynamics simulations. The candidate will work in close collaboration with experimental groups providing
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to: • The design, synthesis and characterization of finely tuned graphene quantum dots (GQDs) and/or GQDs hybrid materials as visible-light-active photocatalysts. • The selective photocatalytic oxidation of 5-HMF
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the laser-induced breakdown spectroscopy, high-order harmonic generation in laser-induced plasmas, gases, and solids, low-order nonlinear optical characterization of quantum dots, thin films, and other
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multidisciplinary team; Good written and oral communication skills in English. Desirable skills: Experience with thin-film photovoltaic materials (perovskites, colloidal quantum dots, etc.); Experience in
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are met at the point of starting date. The position is associated with the Young Scientist Fellow (YSF) project “Emergence of four-dimensional universe from higher-dimensional spacetime” led by Dr. Yusuke
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, artificial intelligence (AI) and quantum computing, biotechnology, energy security, and space sectors. Through DOE/NNSA support, NM LEEP innovators receive up to two years of non-dilutive funding and the
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 3 months ago
) so critical for space missions, as well as their cost. Large detector arrays in the visible and near IR have been developed that come close to the physical limits in terms of quantum efficiency (QE