Mean square relative displacements in a flat graphene monolayer
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The mean square relative atomic displacements (MSRD) in a flat graphene monolayer
are investigated in the approximation of weak anharmonicity. Numerical
results, for not very high temperatures, are calculated using a parametric
interatomic potential constructed specifically for graphene. In summary, our
results show an overall increase in the MSRD as the interatomic distances
increase, the MSRD in the direction of the straight line connecting two pairs of
atoms are smaller than perpendicular ones, and in comparison with other twodimensional
lattices, the MSRD in graphene lattice are greater than those in the
hexagonal and square lattices.
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RODRIGUES, Clóves Gonçalves; CALIXTO, Wesley Pacheco; RABELO, José Nicodemos Teixeira. Mean square relative displacements in a flat graphene monolayer. Physica Status Solidi B: basic solid state physics, Berlin, v. 263, n. 1, e2500255, 2025. DOI: 10.1002/pssb.202500255. Disponível em: https://onlinelibrary.wiley.com/doi/full/10.1002/pssb.202500255. Acesso em: 8 jun. 2026.