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Description of the offer : During this PhD thesis, we propose to explore the properties of exotic antiferromagnetism, in non-collinear antiferromagnets like Mn3Sn or in altermagnets. We will image
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techniques have been demonstrated to enable spin-wave imaging with spatial resolution down to 50 nm with excellent signal to noise ratio. The PhD/postdoc will focus on investigating unexplored spin-wave
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. For this purpose, the measurement procedure is to be enhanced, specified and validated so that the measurement setup can serve as a metrological reference laboratory for national and international partners
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. SOT-MTJs offer compelling advantages similar to SRAM, including ultra-fast dynamics (sub-ns), exception-al endurance (>1014 cycles), and low power operation (sub-pJ). A critical challenge in SOT-MRAM
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: micromagnetic simulation, conversion of theoretical data into experimental contrast and acquisition of experimental images. The work will be carried out by three teams: theory/simulation, spin textures within
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. Requirements: We are looking for a highly motivated candidate with a PhD in theoretical/computational physics or applied mathematics. A strong background in quantum mechanics and numerical simulations is
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/heat transport Your profile You have a PhD in physics with solid knowledge of condensed matter physics, quantum mechanics, and magnetism. You have interest in a wide range of physics and experimental
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and will be hosted by the Nano Engineering and Spintronic Technologies (NEST) group. The NEST group is a vibrant community of interdisciplinary researchers working on a variety of topics including
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Engineering and Spintronic Technologies (NEST) group. The NEST group is a vibrant community of interdisciplinary researchers working on a variety of topics including spintronics, magnetic data storage, nano
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. The position is for at least 12 months, starting at the earliest opportunity. Applicants should hold a PhD or equivalent in Materials Science or Physics. Experience in some of the following areas would be highly