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000826574 1001_ $$0P:(DE-Juel1)161179$$aHanke, Jan-Philipp$$b0$$eCorresponding author$$ufzj
000826574 245__ $$aPrototypical topological orbital ferromagnet γ-FeMn
000826574 260__ $$aLondon$$bNature Publishing Group$$c2017
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000826574 520__ $$aWe predict from first principles an entirely topological orbital magnetization in the noncoplanar bulk antiferromagnet γ-FeMn originating in the nontrivial topology of the underlying spin structure, without any reference to spin-orbit interaction. Studying the influence of strain, composition ratio, and spin texture on the topological orbital magnetization and the accompanying topological Hall effect, we promote the scalar spin chirality as key mechanism lifting the orbital degeneracy. The system is thus a prototypical topological orbital ferromagnet, the macroscopic orbital magnetization of which is prominent even without spin-orbit coupling. One of the remarkable features of γ-FeMn is the possibility for pronounced orbital magnetostriction mediated by the complex spin topology in real space.
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000826574 536__ $$0G:(DE-Juel1)jias12_20121101$$aTopological transport in real materials from ab initio (jias12_20121101)$$cjias12_20121101$$fTopological transport in real materials from ab initio$$x2
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000826574 7001_ $$0P:(DE-Juel1)130643$$aFreimuth, Frank$$b1$$ufzj
000826574 7001_ $$0P:(DE-Juel1)130548$$aBlügel, Stefan$$b2$$ufzj
000826574 7001_ $$0P:(DE-Juel1)130848$$aMokrousov, Yuriy$$b3$$ufzj
000826574 773__ $$0PERI:(DE-600)2615211-3$$a10.1038/srep41078$$gVol. 7, p. 41078 -$$p41078$$tScientific reports$$v7$$x2045-2322$$y2017
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