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laser pulses to create (periodic) assemblies of nanosized chiral spin textures on demand. These tunable structures are predicted to host topological spin waves, and will provide a unique playground to
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Nanomagnetism, supervised by Prof. Bert Koopmans, based at Eindhoven University of Technology. In this project, we aim to develop an optical pen using laser-induced magnetization dynamics and switching to write
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-world applications where size, weight, power consumption, and long-term stability are critical. This project aims to overcome these limitations by integrating recent advances in laser cooling, matter-wave
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at NIOZ (e.g. confocal laser scanning microscopy laser ablation-ICP-MS,) you will investigate ion uptake mechanism and crystallization dynamics: this will help predicting future marine calcification rates
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the device and for algorithm efficiency as compared to qubits. We will explore the use of tightly focused laser beams and their interaction with crystals of trapped ions to realize new ways to prepare and
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radar interferometry (InSAR) integrated with GNSS and airborne laser scanning. The PhD candidate will: Develop a recursive, dynamic monitoring strategy for near-continuous 3D surface displacement