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DTSTART;TZID=Europe/Berlin:20260714T160000
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SUMMARY:TRR 360 Seminar:tbdMathias Kläui
DESCRIPTION:tbd\n \nProf. Dr. Mathias Kläui \nInstitute of Physics\, University of Mainz \n\n\n\n\n\n\n \n\n\n\n \n\n\n\ntbd \n\n\n\n\n\n\n\nVenue
URL:https://www.trr360.de/event/trr-360-seminartbdmathias-klaui/
LOCATION:University of Augsburg\, Room S-288 + Zoom
CATEGORIES:Seminar
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DTSTART;TZID=Europe/Berlin:20260721T160000
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CREATED:20260512T124315Z
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UID:6726-1784649600-1784653200@www.trr360.de
SUMMARY:TRR 360 Seminar:Emergent phenomena in nanosculpted quantum material devicesMaximilian Birch
DESCRIPTION:Emergent phenomena in nanosculpted quantum material devices\n \nDr. Maximilian Birch \nRIKEN Center for Emergent Matter Science\, Japan \n\n\n\n\n\n\n \n\n\n\n \n\n\n\nFocused ion beam (FIB) techniques enable precisely tailored nanoscale devices to be fabricated directly from high-quality single crystals\, providing a powerful platform for exploring emergent transport phenomena and unconventional experimental geometries. In this talk\, I will discuss the development and application of FIB-based device fabrication approaches used to investigate a range of quantum materials and functionalities\, including skyrmion dynamics\, p-wave magnetism\, and time-reversal symmetry breaking antiferromagnets. I will then present our recent development of three-dimensional nanosculpted FIB devices\, focusing on helical structures fabricated from the high-mobility Weyl ferromagnet Co₃Sn₂S₂. By introducing inversion symmetry breaking on the length scale of the electron mean free path\, these structures exhibit large nonreciprocal transport effects\, resulting in a switchable zero-field diode response. More broadly\, these results demonstrate how nanoscale geometric design can be used to access emergent electronic functionality in quantum materials. \n\n\n\n\n\n\n\nVenue
URL:https://www.trr360.de/event/trr-360-seminartbdmaximilian-birch/
LOCATION:University of Augsburg\, Room S-288 + Zoom
CATEGORIES:Seminar
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