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Giant magnetic anisotropy of transition-metal dimers on defected graphene

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arxiv 1305.5978 v4 pith:VFBFNF72 submitted 2013-05-26 cond-mat.mtrl-sci

Giant magnetic anisotropy of transition-metal dimers on defected graphene

classification cond-mat.mtrl-sci
keywords magneticanisotropycomputingdefecteddevicesdimerdimersgiant
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Continuous miniaturization of magnetic units in spintronics and quantum computing devices inspires efforts to search for magnetic nanostructures with large magnetic anisotropy energy (MAE). Typical nanostructures including molecular magnets, magnetic nanoclusters and magnetic nanowires have MAEs of a few meV so their blocking temperature is mostly lower than 50 K. In this work, we demonstrated the feasibility of achieving giant MAE in systems with transition metal dimers on defected and decorated graphene, based on density functional theory calculations. In particular, either a Pt-Ir dimer on a single vacancy or an Os-Ru dimer on a nitrogen-decorated divacancy possesses an MAE larger than 60 meV and high structural stability. Interestingly, their magnetic anisotropy can be conveniently manipulated by using external electric field. These features make them good candidates for the use in room temperature spintronics and quantum computing devices.

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