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technologies aimed at assessing, protecting, and repairing donor livers before transplantation. This PhD project is embedded within the multidisciplinary CRISPR-CRYSTAL consortium, bringing together experts in
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gating. The research will explore how the properties of atomically thin materials can be transformed when different two-dimensional crystals are brought together, creating artificial quantum systems with
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techniques for mineral characterisation, particularly of quartz. Relevant expertise includes crystal chemistry and microtextural characterisation. Experience in mineral exploration, especially geochemical
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the production, charge selection, transport, trapping and sympathetic cooling of HCIs inside laser-cooled Ca+ Coulomb crystals, providing the experimental foundation for the project. The work will range from
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are combined at a certain twist angle between the crystal orientations, an additional periodic modulation of the atomic lattice potential can emerge, often referred to as moiré superlattice. At specific
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of Amsterdam, under the supervision of Prof. Noushine Shahidzadeh (expert on crystallization and sol-gel process in confinement) and Prof. Hannelore Derluyn (expert in micro-CT 3D imaging for porous media
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before appointment. You have a strong background in at least one relevant area, such as mineral-based materials, cement chemistry, mineralogy, crystallization, porous materials, biomineralization
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cavity containing a perovskite crystal. The first objective is to characterize the spectral and temporal response of this system near the transition, which is expected to include memory effects and strong
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micron-sized, cylindrically shaped magnetic garnet crystal. Bibliography: T. Valet et al., PRB 113, L100410 (2026) and PRB 113, 104437 (2026) Work program: The student will work on a home-built NV-center
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sensitivity of green steels [Tata Steel; Marc Geers] PhD 3: From structure to properties in green metastable stainless steels [Philips, Alleima; Marc Geers] PhD 4: Solute-dependent bcc crystal plasticity in