Hydrogen single-particle dynamics in solid LiH at T=20 K has been studied through the incoherent inelasticneutron-scattering technique. A careful analysis of the scattering data has allowed for the determination ofa reliable hydrogen-projected density of phonon states and, from this, of three relevant physical quantities:mean-squared displacement, mean kinetic energy, and Einstein frequency. In order to interpret these experimental findings, a fully quantum microscopic calculation has been carried out using the variational MonteCarlo method. The agreement achieved between neutron-scattering data and Monte Carlo estimates is good. Inaddition, a purely harmonic calculation has been also performed via the same Monte Carlo code, but anharmonic effects in H dynamics were not found relevant. The possible limitations of the present semiempirical potentials are finally discussed.

Quantum hydrogen vibrational dynamics in LiH: Neutron-scattering measurements and variational Monte Carlo simulations

Colognesi D.;Zoppi M.
2004

Abstract

Hydrogen single-particle dynamics in solid LiH at T=20 K has been studied through the incoherent inelasticneutron-scattering technique. A careful analysis of the scattering data has allowed for the determination ofa reliable hydrogen-projected density of phonon states and, from this, of three relevant physical quantities:mean-squared displacement, mean kinetic energy, and Einstein frequency. In order to interpret these experimental findings, a fully quantum microscopic calculation has been carried out using the variational MonteCarlo method. The agreement achieved between neutron-scattering data and Monte Carlo estimates is good. Inaddition, a purely harmonic calculation has been also performed via the same Monte Carlo code, but anharmonic effects in H dynamics were not found relevant. The possible limitations of the present semiempirical potentials are finally discussed.
2004
Istituto di Fisica Applicata - IFAC
Istituto dei Sistemi Complessi - ISC
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/31659
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