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from liquid crystals to foams, as well as polymers and granular systems. These physics studies lie at the interface of physical chemistry and biology. The research will be conducted within the Mesoscopic
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order of 1 in subcycle timescales. This approach enables entirely new wave phenomena, including time reflection, dynamic dispersion engineering, photonic time crystals and the dynamic Casimir effect
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quantum chemistry software capable of simulating molecules Ideally, prior experience with embedding methods or molecular crystals Excellent knowledge of written and spoken German and English Scientific
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development remains limited by the difficulty in obtaining crystals with high structural quality, specifically with a stacking fault density below 500/cm². The Travelling Solvent Method (TSM), which uses a
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sight and sound: liquid crystal polymer-based tactile interfaces for the digital age.” The project aims to create interactive coatings that generate realistic tactile sensations for applications in human
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PhD in Optical Characterization and Photonic Performance Analysis of Liquid Crystal Polymer Coatings
for a motivated PhD candidate to study the optical and photonic performance of advanced liquid crystal polymer coatings for one-way transparency, adaptive camouflage, and smart optical interfaces
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motivated PhD candidate to develop next-generation one-way transparent optical films based on liquid crystal polymer technology. The position is embedded in the research group of Dr. Danqing Liu at Eindhoven
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Skills and Qualifications Scientific Background Applicants should have knowledge in several of the following areas: • Materials physical chemistry: crystal defects, diffusion processes, irradiation effects
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of the candidate is to fabricate and characterize wearable optical metasurfaces and photonic crystals. Main focus will be the understanding of the complex interactions of light with photonic devices as
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are critically influenced by crystal symmetry, spin–orbit coupling, and structural distortions. This project aims to go beyond conventional carrier dynamics by combining non-resonant and resonant excitation