Hydrogen dynamics in heavy alkali metal hydrides obtained through inelastic neutron scattering

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Abstract

Inelastic neutron scattering spectra from polycrystalline NaH, KH, RbH and CsH, measured at low temperature in the energy transfer range 3 meV < E < 500 meV, are reported. From the medium-energy regions, coinciding with the optical phonon bands, accurate hydrogen-projected densities of phonon states are extracted and compared to ab initio lattice dynamics results. The overall agreement is very good. Further lattice dynamics calculations, based on a pairwise Born-Mayer semi-empirical potential scheme, were also performed, providing only limited and qualitative agreement with the experimental data. In conclusion, incoherent inelastic neutron spectroscopy proves to be a stringent validation tool for lattice dynamics simulations of H-containing materials.

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Auffermann, G., Barrera, G. D., Colognesi, D., Corradi, G., Ramirez-Cuesta, A. J., & Zoppi, M. (2004). Hydrogen dynamics in heavy alkali metal hydrides obtained through inelastic neutron scattering. In Journal of Physics Condensed Matter (Vol. 16, pp. 5731–5743). https://doi.org/10.1088/0953-8984/16/32/010

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