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research spanning detector simulation, Spiking Neural Network (SNN) design, neuromorphic hardware, and data-rich experimental systems such as CMS pixel detectors, Timepix4, and novel photodetector
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requirements as applicable to in situ/operando measurements, controls, data acquisition, and metadata/interface requirements, commissioning, verification, and acceptance test criteria appropriate for an MIE
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, and anomaly detection. Build simulation pipelines and, where applicable, hardware-in-the-loop or lab prototypes; manage datasets and reproducible code. Academic Writing Lead and co-author journal and
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and verification techniques for the design of the Drag-Free Attitude and Orbit Control System of the Next Generation Gravity Mission. To achieve this goal, four different objectives must be fulfilled
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Experience with optical simulation software used in gravitational-waves like Finesse, SIS, and others; knowledge of commercial codes like Zemax are a plus. Experience with electronics or hardware development
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including in-memory computing, neuromorphic computing, and hardware acceleration for AI workloads. As a Postdoctoral Researcher in CMOS Design, you will play a central role in the design, simulation, and
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– Hardware & Electronics Qualifications: PhD in Experimental Particle Physics or related field Preferred Qualifications Physics analysis at the graduate level, prior hardware or electronics work. Cryogenic
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implementation on hybrid quantum-classical hardware, and collaboration with a multidisciplinary team of researchers in quantum computing and computational condensed matter physics. The ideal candidate will have a
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be defined at two levels: SAACD Component: This is a UAV made up of hardware and software sub-systems, capable of observing, predicting, deciding and reconfiguring itself to fulfil its mission (e.g
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at two levels: SAACD Component: This is a UAV made up of hardware and software sub-systems, capable of observing, predicting, deciding and reconfiguring itself to fulfil its mission (e.g. surveillance