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Field
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research spans a wide range of topics, including experimental and theoretical molecular physics, the dynamics of complex systems, photonics, and quantum science. This PhD project lies at the interface
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: Analytical Chemistry, Computational Chemistry, Synthesis & Catalysis and Molecular Photonics. The Faculty of Science has a student body of around 8,000, as well as 1,800 members of staff working in education
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, medical and high-tech industries. Research is organized into four themes: Analytical Chemistry, Computational Chemistry, Synthesis & Catalysis and Molecular Photonics. The Faculty of Science has a student
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). The Laboratory for High Performance Ceramics of Empa is equipped with all necessary facilities (workstations and simulation software, chemical labs, DLP and 2 Photon Lithography 3D printing, Raman spectroscopy
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for a future e+e- collider. Measure branching fractions of baryonic multi-strange decays. Photon detector characterisation for a future Time of Flight detector at CERN. web page To discuss a possible
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Novel optics and AI approaches to image the centre of a live root for the first time. This exciting opportunity is based within the thriving Optics and Photonics Research Group in Faculty
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Synchrotron and the Super Photon Ring (SPring-8) Synchrotron in Japan, where our students also regularly conduct their own experiments. Project areas include: Colour (spectroscopic) X-ray imaging in multiple
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SolarNL initiative and includes collaborations with leading Dutch research institutes and industrial partners, including AMOLF and TNO. You will investigate: Photonic and light-management structures
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programme Yes Joint degree / double degree programme No Description/content Photonics is one of the main research fields at the Friedrich Schiller University Jena, and about 300 doctoral candidates
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ecosystem. Focusing on key enabling technologies, such as quantum- and nanotechnology, photonics, biotechnology, synthetic biology and materials for energy storage and conversion, our faculty aims to provide