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  • (-) PSI Groups = 6313 Microscopy and Magnetism
  • (-) Funding (EC, SNSF) = Investigation of current-induced torques in spin-orbit coupled materials
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X-ray spectroscopy of current-induced spin-orbit torques and spin accumulation in Pt/3<em>d</em>-transition-metal bilayers
Stamm, C., Murer, C., Acremann, Y., Baumgartner, M., Gort, R., Däster, S., … Gambardella, P. (2019). X-ray spectroscopy of current-induced spin-orbit torques and spin accumulation in Pt/3d-transition-metal bilayers. Physical Review B, 100(2), 024426 (8 pp.). https://doi.org/10.1103/PhysRevB.100.024426
Complex magnetic exchange coupling between co nanostructures and Ni(111) across epitaxial graphene
Barla, A., Bellini, V., Rusponi, S., Ferriani, P., Pivetta, M., Donati, F., … Carbone, C. (2016). Complex magnetic exchange coupling between co nanostructures and Ni(111) across epitaxial graphene. ACS Nano, 10(1), 1101-1107. https://doi.org/10.1021/acsnano.5b06410
Magnetic remanence in single atoms
Donati, F., Rusponi, S., Stepanow, S., Wäckerlin, C., Singha, A., Persichetti, L., … Brune, H. (2016). Magnetic remanence in single atoms. Science, 352(6283), 318-321. https://doi.org/10.1126/science.aad9898
Origin of perpendicular magnetic anisotropy and large orbital moment in Fe atoms on MgO
Baumann, S., Donati, F., Stepanow, S., Rusponi, S., Paul, W., Gangopadhyay, S., … Brune, H. (2015). Origin of perpendicular magnetic anisotropy and large orbital moment in Fe atoms on MgO. Physical Review Letters, 115(23), 237202 (6 pp.). https://doi.org/10.1103/PhysRevLett.115.237202
Magnetism of Ho and Er atoms on close-packed metal surfaces
Donati, F., Singha, A., Stepanow, S., Wäckerlin, C., Dreiser, J., Gambardella, P., … Brune, H. (2014). Magnetism of Ho and Er atoms on close-packed metal surfaces. Physical Review Letters, 113(23), 237201 (5 pp.). https://doi.org/10.1103/PhysRevLett.113.237201
Reaching the magnetic anisotropy limit of a 3<em>d</em> metal atom
Rau, I. G., Baumann, S., Rusponi, S., Donati, F., Stepanow, S., Gragnaniello, L., … Brune, H. (2014). Reaching the magnetic anisotropy limit of a 3d metal atom. Science, 344(6187), 988-992. https://doi.org/10.1126/science.1252841