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      Hydrogen mean force and anharmonicity in polycrystalline and amorphous ice

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          Abstract

          The hydrogen mean force from experimental neutron Compton profiles is derived using deep inelastic neutron scattering on amorphous and polycrystalline ice. The formalism of mean force is extended to probe its sensitivity to anharmonicity in the hydrogen-nucleus effective potential. The shape of the mean force for amorphous and polycrystalline ice is primarily determined by the anisotropy of the underlying quasi-harmonic effective potential. The data from amorphous ice show an additional curvature reflecting the more pronounced anharmonicity of the effective potential with respect to that of ice Ih.

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          Diatomic Molecules According to the Wave Mechanics. II. Vibrational Levels

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            Nuclear Quantum Effects in Water and Aqueous Systems: Experiment, Theory, and Current Challenges

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              Hierarchical Modeling of Polystyrene: From Atomistic to Coarse-Grained Simulations

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                Author and article information

                Journal
                22 September 2017
                Article
                10.1007/s11467-017-0724-4
                1709.07648
                ce017679-dcb3-4c8f-a103-7358a9a6f563

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

                History
                Custom metadata
                Front. Phys. 13(1), 136101 (2018)
                12 pages, 7 figures, original research
                physics.chem-ph cond-mat.other

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