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000000467 0247_ $$2DOI$$a10.1103/PhysRevLett.101.107204
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000000467 084__ $$2WoS$$aPhysics, Multidisciplinary
000000467 1001_ $$0P:(DE-Juel1)VDB37196$$aLounis, S.$$b0$$uFZJ
000000467 245__ $$aMagnetism of Nanowires Driven by Novel Even-Odd Effects
000000467 260__ $$aCollege Park, Md.$$bAPS$$c2008
000000467 300__ $$a107204
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000000467 440_0 $$04925$$aPhysical Review Letters$$v101$$x0031-9007
000000467 500__ $$aWe thank Dr. Mavropoulos for fruitful discussions. This work was supported by the ESF EUROCORES Programme SONS under Contract No. ERAS-CT-2003-980409 and the DFG Priority Programme SPP1153.
000000467 520__ $$aThe parity of the number of atoms in finite antiferromagnetic nanowires deposited on ferromagnets is shown to be a crucial quantity determining their magnetic ground state. Relating results of the full-potential Korringa-Kohn-Rostoker method for noncollinear magnetism from first principles to a Heisenberg model, we show that the magnetic structure changes dramatically across the entire nanowire if one single atom is added to it. Infinite and finite even-numbered nanochains exhibit always noncollinear magnetism, while odd-numbered wires lead under given conditions to a collinear ferrimagnetic ground state. This extremely nonlocal effect occurs only for nanosized wires.
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000000467 7001_ $$0P:(DE-Juel1)130612$$aDederichs, P. H.$$b1$$uFZJ
000000467 7001_ $$0P:(DE-Juel1)130548$$aBlügel, S.$$b2$$uFZJ
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000000467 8567_ $$uhttp://dx.doi.org/10.1103/PhysRevLett.101.107204
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