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- W2026015420 abstract "Spin-dependent features in the conductivity of graphene, chemically modified by a random distribution of hydrogen adatoms, are explored theoretically. The spin effects are taken into account using a mean-field self-consistent Hubbard model derived from first-principles calculations. A Kubo transport methodology is used to compute the spin-dependent transport fingerprints of weakly hydrogenated graphene-based systems with realistic sizes. Conductivity responses are obtained for paramagnetic, antiferromagnetic, or ferromagnetic macroscopic states, constructed from the mean-field solutions obtained for small graphene supercells. Magnetoresistance signals up to $ensuremath{sim}7%$ are calculated for hydrogen densities around 0.25%. These theoretical results could serve as guidance for experimental observation of induced magnetism in graphene." @default.
- W2026015420 created "2016-06-24" @default.
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- W2026015420 date "2011-06-30" @default.
- W2026015420 modified "2023-10-08" @default.
- W2026015420 title "Magnetoresistance and Magnetic Ordering Fingerprints in Hydrogenated Graphene" @default.
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- W2026015420 doi "https://doi.org/10.1103/physrevlett.107.016602" @default.
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