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processing with light. Near a continuous phase transition, the susceptibility of a material can increase strongly. This allows weak input signals to generate large responses, which can in turn reduce the
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machine-learning approaches. Established markers such as neurofilament light chain (NfL) and GFAP will provide a biological reference point for identifying disease-specific biomarkers. A central part of the
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goal of your PhD project will be to develop combined X-ray and visible-light imaging technologies and machine learning methods for high-throughput inspection tasks. The work will include the development
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scientific and applied research group focused on exploiting light for communication and quantum systems. We apply our knowledge in collaboration with other scientists at TU/e and more recently within the newly
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partners. The main goal of your PhD project will be to develop combined X-ray and visible-light imaging technologies and machine learning methods for high-throughput inspection tasks. The work will include
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of warming and changes in resource availability (light, nitrogen and phosphorus), and 2) improve predictions of ecosystem processes by including the impacts of phytoplankton diversity and composition
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PhD in Optical Characterization and Photonic Performance Analysis of Liquid Crystal Polymer Coatings
develops liquid crystal polymer coatings that can selectively control the direction, wavelength, and polarization of reflected and transmitted light. These materials are designed for optical systems in which
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smart optical interfaces, require materials that can guide light selectively: information should be visible to the user, while remaining hidden from outside observers. This project addresses
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, biophysics, and materials science. In this PhD project, you will: § Develop an experimental platform to study 3D self-organization of active particles. § Fabricate and characterize light-driven microswimmers
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holography, structured-light and fringe projection, deflectometry, pattern tracking, high-speed imaging and thermography. Complementary photonic sensing approaches, such as fibre Bragg grating sensors, may