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to future nano-electronics and nano-spintronics applications, particularly, focus on topological materials, Dirac materials, 2D van der Waals materials, correlated systems, and high-Tc superconductors
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(including CIM and integrated systems) (3) Exploration of innovative hardware for DX through novel FPGA and sensors etc. (4) Advanced devices, e.g., nanomaterials, spintronics, and its AI/DX applications
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fast, efficient, and versatile reconfigurable thermal landscapes controlled by light polarisation, power and illumination patterns (https://dx.doi.org/10.1039/C9NR01628G, https://doi.org/10.1103
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areas. The areas of the faculty's active research are: nanotechnology, spintronics, opto-electronics, renewable power, integrated electrical/biological/optical circuits and systems, image processing and
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the Division of Condensed Matter Theory (https://www.pks.mpg.de/condensed-matter ) range from strongly correlated Fermions and Bosons, spintronics, quantum dynamics in and out of equilibrium, via topological
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, energy and sensing. The role will suit an experimental physicist with a background in spintronics, nanoscale electrical transport, or magnetic device physics, and provides a unique opportunity to
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Physics and Spintronics, and Complex Systems as well as Biophysics, performed in an international environment with extensive national and international collaborations. The education programs
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are: nanotechnology, spintronics, opto-electronics, renewable power, integrated electrical/biological/optical circuits and systems, image processing and analysis, embedded DSP, digital design, logic synthesis, computer