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. The successful candidate will be joining the Optoelectronics group led by Prof. Dr. Valerio Pruneri. The successful candidate will be responsible for the development of quantum communication devices, systems and
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environment. The successful candidates will be joining Quantum Nano-Optoelectronics Research Group lead by Prof. Frank Koppens. They will conduct advanced experimental research within the EIC Pathfinder project
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generation of infrared optoelectronic devices with real-world impact. Our research interests span the fields of solid-state electronics, photonics and optoelectronics, and nanomanufacturing. Our team explores
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of the UltiMatePV project and will coordinate tasks with the project's various partners. Participate in the technological maturation of devices. Conduct numerical simulations (optoelectronic devices, transport
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environment. The Functional Optoelectronic NanoMaterials group at ICFO, led by ICREA Prof. Gerasimos Konstantatos, is looking for outstanding, creative and highly motivated researchers to develop highly
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, Materials Science, Nanoscience, or a closely related field. A strong interest in spectroscopy, optoelectronics, and device fabrication is required. Previous experience in photoluminescence spectroscopy, time
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. The successful candidate will be joining the Optoelectronics group led by Prof. Dr. Valerio Pruneri. The candidate will contribute to the development of new protocols for quantum communication, both in fiber and
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research group. RDI, a member of IMEC. ETRO. RDI (http://www.etrovub.be/ ) of the Vrije Universiteit Brussel (VUB), conducts fundamental and applied research in the field of Micro- and Optoelectronics
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are not limited to: Atto-Science, Ultrafast Optics & Nonlinear Optics Photovoltaics, Thermal Photonics & Solar Fuels Optical Sensing & Optoelectronics NanoPhotonics & NanoMechanics Ultracold Quantum Gases
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context is the development of new optoelectronic components based on the coupling of two separate components, one which addresses the electric current and a second which emits light locally, more precisely