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liquids stand at the forefront of condensed matter physics. By joining our team at École Polytechnique, you will be at the heart of these discoveries, developing a next-generation thermal transport
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will be based on simulated and real data collected from beamline experiments and will require collaboration with specialists in physics, optics, and instrumentation. The position involves both
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to the lithographic process such as overlay; - Interact and work with a PhD student focusing on the data modeling to understand the acquired data and explore the limitation of the Low Energy SAXS technique; - Define
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strict constraints on performance, power, area, cost, and reliability, all while adapting to rapidly evolving workloads and technologies. The design process involves both hardware architecture choices (e.g
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Dopant and Defect Physics for Device Optimization for Hafnium Oxide based Devices Devices realized with ferroelectric hafnium oxide are silicon compatible, power-efficient, and can be cost
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for process-local loose coupling in high-performance simulation codes. PDI supports the modularization of codes by inter-mediating data exchange between the main simulation code and independent modules (plugins