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Field
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to endow these bio-inspired models with efficient processing capabilities. Structural plasticity for example consists in letting the network’s sparse connectivity evolve throughout training, while delay
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volume is present on thin tin sheet targets as used in EUV sources [Liu, Phys. Rev. Appl. 20, (2023)], and work on an alternative EUV source solution [Mostafa, Appl. Phys. Lett. 123, (2023)]. Background
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the opportunity to work at the forefront of this rapidly developing field. The research project focuses on moiré materials: atomically thin layers stacked with a small twist angle, creating a new, larger periodic
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necessary time and size scales, enabling realistic thin-film growth simulations with near-quantum accuracy at a fraction of the computational cost. The tools developed in this position have the potential
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I supervise a broad portfolio of projects in surface and materials physics, with a strong focus on novel electronic materials such as topological insulators, moiré metamaterials, and atomically thin
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these articles, an additional 5 points will be awarded, setting the maximum for this section at 15 points. • Advanced technical knowledge: Experience in the use of solution-based thin-film fabrication
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performance, possibly using the learned reduced-order models and the spatially distributed sensors. Data-driven predictive control design of PDEs based on Koopman operators and/or relying on sparse
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approaches. While underground stope design is critical for safe and efficient ore extraction, it is often constrained by sparse geotechnical data. Conventional interpolation techniques frequently struggle with
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cannot address this. This project explores a new approach using optical metasurfaces —ultra-thin optical layers that shape light—to enhance vision directly, without electronics. The aim is to increase
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Department. Duties of the position We are seeking a PhD candidate to perform experimental research using pulsed laser deposition of thin films, combining Van der Waals materials (topological insulators) with