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Field
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of the linear-scaling Wannier optics approach, with the goal of enabling predictive simulations of optical excitations in large and structurally complex systems. Particular emphasis lies on the theoretical
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10 Jul 2026 Job Information Organisation/Company Delft University of Technology (TU Delft) Research Field Physics » Optics Physics » Quantum mechanics Researcher Profile First Stage Researcher (R1
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(QuBriC), we are seeking a PhD researcher who will work on quantum error correction for photonic, optical and microwave, quantum computing architectures within the group of Prof. Terhal at Delft University
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use imaging surveys at X-ray, optical, infrared and radio wavelengths to measure the emission from stars, active galactic nuclei, warm dust, atomic hydrogen and relativistic electrons. Spectroscopic
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the optical-to-radio wavelength range, from major surveys and space telescopes (e.g: Gaia, SDSS, JWST, Hubble, Roman, Rubin-LSST). These are analysed using advanced machine learning and data-driven methods. My
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Xomalis. About the project We are searching for a creative, skilled and ambitious candidate for our activities on the optics of wearable metasurfaces with applications in health monitoring. The aim
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networks, long-term quantum information storage, and complex quantum simulations. While these demonstrations point to a wide range of applications, critical challenges regarding color center physics and
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on genetically and optically tractable arthropod species that satisfy a number of appealing biological and technical requirements. We combine advanced microscopy and image analysis pipelines with genetic and
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Resonance (NMR), optical microscopy, particle characterization and surface analysis. By integrating experimental observations across a diverse library of dairy powders, the project will establish
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them for specific tasks. The project will combine: Mathematical modelling of dynamical systems; Computational photonics simulations; Comparison with real physical systems (especially photonic systems