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    Título
    Orbital-free density functional theory simulation of collective dynamics coupling in liquid Sn
    Autor
    González Del Rio, BeatrizAutoridad UVA Orcid
    Chen, Mohan
    González Tesedo, Luis EnriqueAutoridad UVA
    Carter, Emily A.
    Año del Documento
    2018
    Editorial
    AIP Publishing
    Descripción
    Producción Científica
    Documento Fuente
    The Journal of Chemical Physics, 2018, Vol. 149, 094504:1-15
    Resumen
    The appearance of a second excitation mode in the longitudinal and transverse collective dynamics of a series of liquid metals has been observed recently, either by inelastic X-ray scattering (IXS) or by first-principles molecular dynamics (FPMD). The phenomenon’s origin is still uncertain, although some theories have been used with relative success to reproduce the FPMD results as a means to find an explanation for it (e.g., mode-coupling (MC) theory in liquid zinc [B. G. del Rio and L. E. González, Phys. Rev. B 95, 224201 (2017)]). For liquid tin (l-Sn), the second excitation mode in the dynamic structure factor and longitudinal current spectrum was observed by IXS [S. Hosokawa et al., J. Phys.: Condens. Matter 25, 112101 (2013)]. By performing orbital-free density functional theory MD simulations of l-Sn, we confirm the existence of a second excitation mode in the longitudinal and transverse collective dynamics and provide a theoretical explanation based on MC theory. Moreover, we introduce a new binary term in MC theory to better capture the negative minima present in the memory functions of the collective dynamics. These results confirm that the origin of the second excitation mode exhibited by the longitudinal and transverse collective dynamics in some liquid metals involves an indirect coupling of the longitudinal and transverse modes.
    Palabras Clave
    liquid metals
    orbital-free density functional theory
    molecular dynamics
    mode coupling theory
    ISSN
    0021-9606
    Revisión por pares
    SI
    DOI
    10.1063/1.5040697
    Patrocinador
    Office of Naval Research (Grant No. N00014-15-1-2218)
    Ministerio de Educación, Cultura y Deporte (Proyecto FIS2014-59279-P) y fondos FEDER
    Universidad de Valladolid
    Version del Editor
    https://pubs.aip.org/aip/jcp/article/149/9/094504/361290/Orbital-free-density-functional-theory-simulation
    Idioma
    eng
    URI
    https://uvadoc.uva.es/handle/10324/63843
    Tipo de versión
    info:eu-repo/semantics/publishedVersion
    Derechos
    openAccess
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    Universidad de Valladolid

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