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Field
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of spatiotemporal polaritons and to design spatiotemporal metamaterial platforms supporting new forms of hybrid light–matter dynamics. The work combines nanophotonics, metamaterials, ultrafast optics, condensed
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affected by environmental and operational conditions. This project aims to tackle these challenges by using piezo-electric and/or optical fiber based sensor system, combined with physics informed data
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to coordinate participant recruitment, OPM-MEG and eye-tracking data collection, analysis, documentation and reporting to meet deadlines. You will adapt existing and develop new scientific techniques and child
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near-field optical microscopy, investigating molecular vibrations, phonons and unusual light–matter coupling regimes. Depending on the candidate’s interests, there will also be opportunities to develop
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of incoherent light and use these models for the joint optimisation of the optics and computational imaging. You will also contribute to the development and prototyping of the camera optics and hardware, with
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and apply cutting-edge single-cell and spatial multi-omic approaches that link molecular signatures to cancer cell vulnerabilities. Working at the interface of molecular, chemical and optical method
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, optical losses still limit device performance. Reflection losses, parasitic absorption, and incomplete spectral splitting reduce the efficient use of sunlight in tandem architectures. In this PhD project
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, with emphasis on micro- and nano-fabrication and optical technologies for sensing, actuation, and control. The research includes the design, fabrication, and experimental validation of micro-scale
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24 Jul 2026 Job Information Organisation/Company University of Basel Research Field Engineering » Electrical engineering Engineering » Other Physics » Optics Researcher Profile First Stage
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project is to overcome these limitations through the design of a flexible, quantum sensing foil based on an atomically-thin two-dimensional (2D) material. Our approach consists in using optically-active