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Are you fascinated by application-oriented research in mathematics and eager to work at the interface of numerical optimization, optical design, and uncertainty quantification? In this PhD project
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efficiency, and system robustness. The primary objective of the project is to develop novel circuit topologies and design techniques that push the state of the art in high-speed optical interfaces. Key
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. The group expertise spans from the fundamentals and physics of photonics, optics, the design and fabrication of photonic integrated circuits (PICs) systems to exploiting optical linear/non-linear signal
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topologies and design techniques that push the state of the art in high-speed optical interfaces. Key research goals include increasing bandwidth and data rate capability, improving the driving strength and
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affects heat and mass transfer, and how surface design can improve the efficiency of the process. As a PhD candidate in the Thermal Conversion and Storage group at the University of Twente, you will
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, optics, the design and fabrication of photonic integrated circuits (PICs) systems to exploiting optical linear/non-linear signal processing to unlock fiber capacity and relevant higher layer protocols
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safety margins are often required in structural design, leading to heavier structures, while maintenance intervals may be more conservative than necessary. Developing reliable methods to continuously
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Are you inspired by developing the next generation of intelligent photonic chips? Join us to pioneer heterogeneously integrated photonic technologies for ultra-fast, energy-efficient optical
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textures just by design? Join us as a PhD candidate on the ERC project “Topological Magnetism by Photonic Design” – TOP DESIGN! Information Topology is a fundamental concept with intriguing implications
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to research in porous and photoactive materials. You will first implement new reliable and quantitative diffusion-ordered optical spectroscopy that will permit rapid and automated determination of fundamental