The RKKY Coupling between Impurity Spins in Graphene Nanoflakes
arXiv:1106.4233 · doi:10.1103/PhysRevB.84.205409
Abstract
We calculate the indirect charge carrier mediated Ruderman-Kittel-Kasuya-Yosida (RKKY) interaction between magnetic impurities for two selected graphene nanoflakes containing four hexagonal rings in their structure, differing by their geometry. We describe the electronic structure of either charge-neutral or doped nanoflakes using the tight-binding approximation with the Hubbard term, which is treated within the molecular-field approximation. We find pronounced differences in the RKKY coupling energies, dependent on the placement of the pair of magnetic moments in the nanostructure and on the edge form. For an odd total number of electrons in the structure, we predict in some circumstances the existence of ferromagnetic coupling with leading first-order perturbational contribution, while for an even number of charge carriers the usual, second-order mechanism dominates. Therefore, doping of the nanoflake with a single charge carrier is found to be able to change the coupling from an antiferromagnetic to a ferromagnetic one for some geometries.
12 pages, 9 figures
References in corpus (22)
- The electronic properties of graphene
- Detection of Individual Gas Molecules Absorbed on Graphene
- Emergence of magnetism in graphene materials and nanostructures
- Magnetism in graphene nano-islands
- Magnetic Correlations at Graphene Edges
- Friedel oscillations, impurity scattering and temperature dependence of resistivity in graphene
- Metallic Graphene Nanodisks
- RKKY in half-filled bipartite lattices: graphene as an example
- Diluted Graphene Antiferromagnet
- RKKY Interaction in Graphene from Lattice Green's Function
- RKKY interaction in graphene
- RKKY Interaction in Graphene Calculated Following Ruderman and Kittel
- Kondo Quantum Criticality of Magnetic Adatoms in Graphene
- Dynamical Signatures of Edge-State Magnetism on Graphene Nanoribbons
- Theory of Magnetic Edge States in Chiral Graphene Nanoribbons
- Hidden multiferroic order in graphene zigzag ribbons
- Analytical Expression for the RKKY Interaction in Doped Graphene
- Coulomb Blockade in Graphene Nanodisks
- Magnetic Impurities in Graphene
- Spin Filter, Spin Amplifier and Other Spintronic Applications in Graphene Nanodisks
- Quasi-Ferromagnet Spintronics in Graphene Nanodisk-Lead System
- Quasi-Phase Transition and Many-Spin Kondo Effects in Graphene Nanodisk
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- Orbital magnetism of graphene flakes
- Dynamic RKKY interaction in graphene
- Effect of Rashba splitting on RKKY interaction in topological insulator thin films
- RKKY interaction in gapped or doped graphene
- Effective magnetic correlations in hole-doped graphene nanoflakes
- Indirect RKKY interaction in armchair graphene nanoribbons
- Strain-induced modulation of magnetic interactions in graphene
- Indirect coupling between localized magnetic moments in triangular graphene nanoflakes
- Symmetries and hybridization in the indirect interaction between magnetic moments in MoS nanoflakes
- Noncollinear exchange interaction in transition metal dichalcogenide edges
- Ground-state magnetic phase diagram of bow-tie graphene nanoflakes in external magnetic field
- Electric field control of the indirect magnetic coupling through a short graphene nanoribbon
- Trigonal warping, pseudodiffusive transport, and finite-system version of the Lifshitz transition in magnetoconductance of bilayer-graphene Corbino disks
- Indirect coupling between localized magnetic moments in zero-dimensional graphene nanostructures (quantum dots)