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). Based at Seagate Technology (Springtown), you will lead microfabrication and metrology to realise device structures from pre-deposited magnetic wafers, including design and patterning of pillars and Hall
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memories for processors requires to further increase the areal density, and ideally shift to a 3D design similar to 3D NAND flash. A first move along this path was the proposal of the Perpendicular Shape
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junctions (MTJs) for applications such as magnetic sensors and magnetoresistive random access memories (MRAM). This experience should encompass design and optimization of material stacks, experimental
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in magnetic 3D nanoscale metamaterials to design next-generation high-performance computational devices. Specifically, you’ll investigate how vortex and spin wave dynamics can be modified in a
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This is an exciting opportunity to join a leading research effort exploring magnetotransport in nanoscale 3D magnetic systems, linking geometric design, spin texture, and electronic functionality
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combined computational/experimental workflow for the AI-supported design of sustainable magnets free of rare earth elements. The activities focus on MnBi-based magnets with the goal to improve α-phase
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circuits. - Designing and evaluating energy-efficient, secure computing systems for AI and edge applications. - Contributing to collaborative research proposals, dissemination activities, and joint
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will widen the applicability of mNDT and support the design of next-generation materials. This project is offered through the HetSys Centre for Doctoral Training at the University of Warwick
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An Innovation, Impact and Business directorate that works closely with our academics providing specialist support for external engagement and development Our Exeter Academic initiative supporting high performing