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O: Fachverband Oberflächenphysik

O 14: Electronic Structure of Surfaces: Magnetism and Spin Phenomena II

O 14.4: Vortrag

Montag, 20. März 2017, 15:45–16:00, WIL C107

Spin texture manipulation in the multiferroic Rashba semiconductor GeMnxTeJuraj Krempasky1, Stefan Muff1,2, Jan Minar3, Nicolas Pilet1, Peter Warnicke1, Vladimir Strocov1, Gunther Springholz4, and •Hugo Dil1,21Swiss Light Source, Paul Scherrer Institut, Switzerland — 2Institute of Physics, Ecole Polytechnique Fédérale de Lausanne, Switzerland — 3Department of Chemistry, Ludwig Maximillian Universität, Germany — 4Institut für Halbleiter-und Festkörperphysik, Johannes Kepler Universität, Austria

The search for materials with novel functional spin properties has received a prominent place in modern condensed matter physics because of the promise they bear in spinorbitronics and topological quantum phenomena. Multiferroic Rashba semiconductors are expected play an important role in this aspect because they combine a large Rashba-type spin splitting and ferromagnetic order in a manipulatable environment. By using a combination of spectroscopic techniques we could determine the electronic structure and spin properties of Mn-doped GeTe thin films[1,2]. The 3D Fermi surface takes the shape of a gapped spindle torus with just one spin-polarised Fermi sheet. Furthermore, it will be shown that the spin properties can be manipulated by either an electric field, a magnetic field, or optical stimuli. The films remain superconducting even after Mn doping, thus providing all the ingredients for the formation and manipulation of Majorana fermions.

[1,2] J. Krempasky et al. PRB 94, 205111 (2016); J. Krempasky et al. Nature Commun. 7, 13071 (2016).

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