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economy. Thermal interfaces at cryogenic conditions: Many advanced technologies — like quantum computers, powerful microscopes, and chip-making tools — require extreme cooling. However, the optimal design
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transition depends on data that almost no one is allowed to see. Distribution system operators (DSOs), municipalities and energy communities need high-resolution grid and consumption data to plan grid
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scheduling algorithms for fast control and reconfiguration of the optical AI compute clusters. Realize a small-scale compute cluster lab testbed to demonstrate and evaluate the performance of the innovative
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What about shaping the future of optical metrology? Job description Optical metrology plays a critical role in semiconductor manufacturing by enabling non-contact, high-precision measurement
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physics and building high performance imaging systems. She or he has a demonstrable interest in optics, signal processing, and mathematics or machine learning. The candidate should have an MSc degree in
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on a radical new technology with world-changing potential. We are developing scalable prototypes of a quantum computer and a secure quantum internet. We believe quantum technology will be a game changer
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behaviour in high magnetic fields, such as the emergence of quasiparticles that behave as if they experience zero magnetic field. Understanding these effects is at the forefront of research into quantum
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is a mission-driven research institute of TU Delft. Together we are working on a radical new technology with world-changing potential. We are developing scalable prototypes of a quantum computer and a
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of data are generated and must be processed at extremely high speed in real-time. However, the rate of improvement in conventional computing hardware has begun to stagnate, creating a critical bottleneck
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at cryogenic conditions: Many advanced technologies — like quantum computers, powerful microscopes, and chip-making tools — require extreme cooling. However, the optimal design of cooling systems at cryogenic