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Spin-resolved electronic structure of ferroelectric {\alpha}-GeTe and multiferroic Ge1-xMnxTe

Authors :
Krempasky, J.
Fanciulli, M.
Minár, J.
Khan, W.
Muntwiler, M.
Bertran, F.
Muff, S.
Weber, A. P.
Strocov, V. N.
Volobuiev, V. V.
Springholz, G.
Dil, J. H.
Publication Year :
2017

Abstract

Germanium telluride features special spin-electric effects originating from spin-orbit coupling and symmetry breaking by the ferroelectric lattice polarization, which opens up many prospectives for electrically tunable and switchable spin electronic devices. By Mn doping of the {\alpha}-GeTe host lattice, the system becomes a multiferroic semiconductor possessing magnetoelectric properties in which the electric polarization, magnetization and spin texture are coupled to each other. Employing spin- and angle-resolved photoemission spectroscopy in bulk- and surface-sensitive energy ranges and by varying dipole transition matrix elements, we disentangle the bulk, surface and surface-resonance states of the electronic structure and determine the spin textures for selected parameters. From our results, we derive a comprehensive model of the {\alpha}-GeTe surface electronic structure which fits experimental data and first principle theoretical predictions and we discuss the unconventional evolution of the Rashba-type spin splitting upon manipulation by external B- and E-fields.<br />Comment: 7 pages, 7 figures, 1 ancillary file

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1708.04104
Document Type :
Working Paper