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      Adsorption of Helium atoms on two-dimensional substrates

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          Abstract

          The study of the adsorption phenomenon of helium began many decades ago with the discovery of graphite as a homogeneous substrate for investigation of physically adsorbed monolayer films. In particular, helium monoatomic layers on graphite were found to exhibit a very rich phase diagram. In the present work we have investigated the adsorption phenomenon of helium atoms on graphene and silicene substrates by means of density functional theory with Born-Oppenheimer approximation. Helium-substrate and helium-helium interactions were considered from first principles. Vibrational properties of adsorbed monolayers have been used to explore the stability of the system. This approach reproduces results describing the stability of a helium monolayer on graphene calculated by quantum Monte Carlo (QMC) simulations for low and high coverage cases. However, for the moderate coverage value there is discrepancy with QMC results due to the lack of helium zero point motion.

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          Journal
          12 January 2016
          Article
          10.1007/s10909-016-1473-4
          1601.02868
          41f956e8-d231-43fc-b763-9dac36893818

          http://arxiv.org/licenses/nonexclusive-distrib/1.0/

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          cond-mat.mtrl-sci

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