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Dresden 2011 – wissenschaftliches Programm

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MA: Fachverband Magnetismus

MA 63: Poster II (Surface Magnetism/ Magnetic Imaging/ Topological Insulators/ Spin Structures and Magnetic Phase Transitions/ Graphene/ Magnetic Thin Films/ Magnetic Semiconductors/ Magnetic Half-metals and Oxides/ Spin-dependent Transport/ Spin Excitations and Spin Torque/ Spin Injection and Spin Currents in Heterostructures/ Spintronics/ Magnetic Storage and Applications)

MA 63.49: Poster

Freitag, 18. März 2011, 11:00–14:00, P2

ZnO thin films with (Li,Ni)-codopingSenthil Kumar1, Matthias Althammer2, Deepak Venkateshvaran2, Eva Karrer-Müller2, Sebastian T.B. Goennenwein2, M.S. Ramachandra Rao1, •Matthias Opel2, and Rudolf Gross21Materials Science Research Centre, Indian Institute of Technology Madras, Chennai, India — 2Walther-Meissner-Institut, Bayerische Akademie der Wissenschaften, Garching, Germany

The wide bandgap II-VI semiconductor ZnO is controversially discussed with regard to both dilute magnetic doping and stable p-type conductivity. Following a recent report [APL 96, 232504 (2010)], we investigated (Li,Ni)-codoping to establish ferromagnetism together with p-type conduction. Using laser-MBE, we deposited thin films from stoichiometric targets with compositions Zn0.98−xLixNi0.02O (x=0, 0.02, 0.05, 0.09). High-resolution x-ray diffraction reveals excellent structural quality and nearly perfect in-plane orientation. Magnetization measurements show an “S”-shaped behavior in M(H) at room temperature and a clear difference after field cooling or zero-field cooling in M(T) which is reminiscent of superparamagnetism. The saturation magnetic moment is around 0.7 µB per Ni and, hence, very close to the bulk value of Ni metal (0.6 µB). From thermopower measurements, we obtained negative Seebeck coefficients between −400 µV/K and −900 µV/K, with smaller absolute values corresponding to lower Li concentrations. In summary, we could not confirm p-type conductivity or ferromagnetism in (Li,Ni)-substituted ZnO thin films.

This work was supported by the DAAD and the DFG via SPP 1285.

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