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Otto Stern Symposium 2013
Otto Stern Lecture Hall, Jungiusstraße 9, 20355 Hamburg
Press Release in German
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The world’s smallest magnet
A. A. Khajetoorians, B. Baxevanis, C. Hübner, T. Schlenk, S. Krause, T. O. Wehling, S. Lounis, A. Lichtenstein, D. Pfannkuche, J. Wiebe, and R. Wiesendanger,
Science 339 no. 6115 pp. 55-59 (2013).

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New technique for imaging and manipulating tiny magnets
Individual Atomic-Scale Magnets Interacting with Spin-Polarized Field-Emitted Electrons,
A. Schlenhoff, S. Krause, A. Sonntag, and R. Wiesendanger,
Phys. Rev. Lett. 109 097602 (2012).

Direct imaging of magnetic molecular orbitals succeeded
Real-space observation of spin-split molecular orbitals of adsorbed single-molecule magnets,
J. Schwöbel, Y. Fu, J. Brede, A. Dilullo, G. Hoffmann, S. Klyatskaya, M. Ruben, and R. Wiesendanger,
Nature Communications 3 953 (2012).

Spin spirals for energy-efficient computer systems
Information Transfer by Vector Spin Chirality in Finite Magnetic Chains,
M. Menzel, Y. Mokrousov, R. Wieser, J.E. Bickel, E. Vedmedenko, S. Blügel, S. Heinze, K. von Bergmann, A. Kubetzka, and R. Wiesendanger,
Physical Review Letters 108, 197204 (2012)

LEGO with atomic magnets
Atom-by-atom engineering and magnetometry of tailored nanomagnets,
A. A. Khajetoorians, J. Wiebe, B. Chilian, S. Lounis, S. Blügel, and R. Wiesendanger,
Nature Physics 8, 497–503 (2012).

A thermometer for the nanoworld
Joule Heating and Spin-Transfer Torque Investigated on the Atomic Scale Using a Spin-Polarized Scanning Tunneling Microscope,
S. Krause, G. Herzog, A. Schlenhoff, A. Sonntag, and R. Wiesendanger,
Phys. Rev. Lett 107, 186601 (2011).

Lattice of magnetic vortices
Spontaneous atomic-scale magnetic skyrmion lattice in two dimensions,
S. Heinze, K. von Bergmann, M. Menzel, J. Brede, A. Kubetzka, R. Wiesendanger, G. Bihlmayer, S. Blügel,
Nature Physics 7, 713–718 (2011).

Logic with atoms: the smallest OR of the world
Realizing All-Spin Based Logic Operations Atom by Atom,
A. A. Khajetoorians, J. Wiebe, B. Chilian, and R. Wiesendanger,
Science 332 (6033): 1062-1064 (2011).

Electrical contact with a bit of the quantum world
Detecting excitation and magnetization of individual dopants in a semiconductor,
A. A. Khajetoorians, B. Chilian, J. Wiebe, S. Schuwalow, F. Lechermann, and R. Wiesendanger,
Nature 467, 1084–1087 (2010).
Imaging and manipulation of atomic spins
Imaging and Manipulating the Spin Direction of Individual Atoms
D. Serrate, P. Ferriani, Y. Yoshida, S.-W. Hla, M. Menzel, K. von Bergmann, S. Heinze, A. Kubetzka, and R. Wiesendanger,
Nature Nanotechnology 5, 350 - 353 (2010).
How conduction electrons mediate between atomic bits
Strength and directionality of surface Ruderman–Kittel–Kasuya–Yosida interaction mapped on the atomic scale,
L. Zhou, J. Wiebe, S. Lounis, E. Vedmedenko, F. Meier, S. Blügel, P. H. Dederichs, and R. Wiesendanger,
Nature Physics 6, 187 - 191 (2010).
La-Ola in nanomagnets
Magnetization Reversal of Nanoscale Islands: How Size and Shape Affect the Arrhenius Prefactor,
S. Krause, G. Herzog, T. Stapelfeldt, L. Berbil-Bautista, M. Bode, E.Y. Vedmedenko, and R. Wiesendanger,
PRL 103, 127202 (2009).

Movement in the nanoworld
Atomically resolved mechanical response of individual metallofullerene molecules confined inside carbon nanotubes,
M. Ashino, D. Obergfell, M. Halu ka, S. Yang, A. N. Khlobystov, S. Roth, and R. Wiesendanger,
Nature Nanotechnology 3, 337 - 341 (2008).

Atomic bits in sight
Revealing magnetic interactions from single-atom magnetization curves,
F. Meier, L. Zhou, J. Wiebe, and R. Wiesendanger,
Science 320, 82-86 (2008).
Magnetic data storage technology of the future
Current-Induced Magnetization Switching with a Spin-Polarized Scanning Tunneling Microscope,
S. Krause, L. Berbil-Bautista, G. Herzog, M. Bode, and R. Wiesendanger,
Science 317 no. 5844 pp. 1537-1540 (2007).

Magnetic turning sense in the nanoworld
Chiral magnetic order at surfaces driven by inversion asymmetry,
M. Bode, M. Heide, K. von Bergmann, P. Ferriani, S. Heinze, G. Bihlmayer, A. Kubetzka, O. Pietzsch, S. Blügel, and R. Wiesendanger,
Nature 447, 190-193 (2007).
Hamburg scientists manage the mapping of individual atomic magnetic moments of non-conductors
Magnetic exchange force microscopy with atomic resolution,
U. Kaiser, A. Schwarz, and R. Wiesendanger
Nature 446, 522-525 (2007).




