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these nanocomposites, we are looking for a postdoc to further develop high performance computing numerical methods in our state-of-the-art open source micromagnetic model, MagTense. MagTense is based on a core
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Description of the offer : Spin vertical external cavity surface emitting lasers (spin-VECSELs) reveal unprecedented advantages of spintronics for applications beyond magnetoresistance and have the potential to form a new generation of optical communication systems. Till now, the circular...
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) Doctoral Networks (DN), 2023, within the European Union's EU Framework Programme for Research and Innovation Europe Horizon. The TOPOCOM consortium contains six leading European Universities and two major
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and apply ion beam technology for internal R&D and industrial projects. • Coordinate technical collaborations with academic labs and industrial partners. • Contribute to ideation and strategy with
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Description of the offer : *This position is one of the 11 of the MSCA Doctoral Network 'NeuroNanotech'* The aim of the project is the complete characterization of magnetoresistive sensors from room to body temperature, including the development and optimization of the associated electronics....
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International Program) Spin-Ion Technologies, a spin-off from Paris-Saclay University and the French National Center for Scientific Research (CNRS), is at the forefront of advanced manufacturing processes
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. This computational role focuses on modeling temperature-dependent magnetic properties in thin films, including disordered systems, using multiscale simulations. Applicants should have a PhD in condensed matter physics
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Description of the offer : At the Technical University of Denmark (DTU) we are looking for a postdoc to work on novel micromagnetic modeling of new magnetic composites. We will investigate the necessary exchange coupling and nano-structuring needed to realize a strong permanent magnet using our...
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Description of the offer : Magnetism intervenes in the data storage components, with information coded by the magnetization direction of submicronic magnetic domains. The calculations are instead done using semiconducting materials, with transistors performing logical operations (“NOT”, “AND”...
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currents for their use in innovative magnetic memory and computing applications. The devices will be fabricated by thin film sputtering growth and lithography in cleanroom facilities, and characterized by