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3D hydrodynamical model atmospheres of metal-poor stars - Evidence for a low primordial Li abundance

Asplund, Martin; Nordlund, Ake; Trampedach, Regner; Stein, Robert F

Description

Realistic 3-dimensional (3D), radiative hydrodynamical surface convection simulations of the metal-poor halo stars HD140283 and HD84937 have been performed. Due to the dominance of adiabatic cooling over radiative heating very low atmospheric temperatures are encountered. The lack of spectral lines in these metal-poor stars thus causes much steeper temperature gradients than in classical 1D hydrostatic model atmospheres where the temperature of the optically thin layers is determined by...[Show more]

dc.contributor.authorAsplund, Martin
dc.contributor.authorNordlund, Ake
dc.contributor.authorTrampedach, Regner
dc.contributor.authorStein, Robert F
dc.date.accessioned2002-12-18
dc.date.accessioned2004-05-19T04:52:15Z
dc.date.accessioned2011-01-05T08:42:14Z
dc.date.available2004-05-19T04:52:15Z
dc.date.available2011-01-05T08:42:14Z
dc.date.created1999
dc.identifier.urihttp://hdl.handle.net/1885/40066
dc.identifier.urihttp://digitalcollections.anu.edu.au/handle/1885/40066
dc.description.abstractRealistic 3-dimensional (3D), radiative hydrodynamical surface convection simulations of the metal-poor halo stars HD140283 and HD84937 have been performed. Due to the dominance of adiabatic cooling over radiative heating very low atmospheric temperatures are encountered. The lack of spectral lines in these metal-poor stars thus causes much steeper temperature gradients than in classical 1D hydrostatic model atmospheres where the temperature of the optically thin layers is determined by radiative equilibrium. The modified atmospheric structures cause changes in the emergent stellar spectra. In particular, the primordial Li abundances may have been overestimated by 0.2-0.35 dex with 1D model atmospheres. However, we caution that our result assumes local thermodynamic equilibrium (LTE), while the steep temperature gradients may be prone to e.g. over-ionization.
dc.format.extent125033 bytes
dc.format.mimetypeapplication/pdf
dc.language.isoen_AU
dc.subjectconvection
dc.subjectstars: abundances
dc.subjectstars: atmospheres
dc.subjectstars: Population II
dc.subjectline: formation
dc.title3D hydrodynamical model atmospheres of metal-poor stars - Evidence for a low primordial Li abundance
dc.typeJournal article
local.description.refereedyes
local.identifier.citationpagesL17-L20
local.identifier.citationpublicationAstronomy and Astrophysics (Letters to the editors)
local.identifier.citationvolume346
local.identifier.citationyear1999
local.identifier.eprintid750
local.rights.ispublishedyes
dc.date.issued1999
CollectionsANU Research Publications

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