VizieR

CfA VizieR . ADAC VizieR . Cambridge (UK) VizieR . IUCAA VizieR . INASAN VizieR .

VizieR

  
J/A+A/564/A133
  Gaia FGK benchmark stars: metallicity (Jofre+, 2014)
Post annotation
img(gal)
1.J/A+A/564/A133/linesEquivalent width measurements and Iron abundances for different methods for each iron line for each star (4252 rows)

 
Query by Constraints constraints help applied on Columns (Output Order: + - )
ShowSortColumn  Constraint Explain   (UCD)
  recno  Record number assigned by the VizieR team. Should Not be used for identification. (meta.record)
  Name (char) Star name (meta.id;meta.main)
  Line (char) Line (FeI or FeII) (meta.id;spect.line)
  lambda 0.1nm [4787/6821] Wavelength of iron line used (em.wl;spect.line)
  Ex.P eV Excitation potential (phys.atmol.excitation)
  EW1 0.1pm (n) Equivalent width obtained by the EPINARBO method (Note G1)   (spect.line.eqWidth;meta.modelled)
  EW2 0.1pm (n) Equivalent width obtained by the UCM method (Note G1)   (spect.line.eqWidth;meta.modelled)
  EW3 0.1pm (n) Equivalent width obtained by the Porto method (Note G1)   (spect.line.eqWidth;meta.modelled)
  EW4 0.1pm (n) Equivalent width obtained by the Bologna method (Note G1)   (spect.line.eqWidth;meta.modelled)
  EW5 0.1pm (n) Equivalent width obtained by the ULB method (Note G1)   (spect.line.eqWidth;meta.modelled)
  EW6 0.1pm (n) Equivalent width obtained by the LUMBA method (Note G1)   (spect.line.eqWidth;meta.modelled)
  Ab1 [-] (n) [4/9.9] Iron abundances (A(Fe)) obtained by the EPINARBO method (Note G1)   (phys.abund.Fe)
  Ab2 [-] (n) [4/9.9] Iron abundances (A(Fe)) obtained by the UCM method (Note G1)   (phys.abund.Fe)
  Ab3 [-] (n) [4/9.9] Iron abundances (A(Fe)) obtained by the Porto method (Note G1)   (phys.abund.Fe)
  Ab4 [-] (n) [4/9.9] Iron abundances (A(Fe)) obtained by the Bologna method (Note G1)   (phys.abund.Fe)
  Ab5 [-] (n) [4/9.9] Iron abundances (A(Fe)) obtained by the ULB method (Note G1)   (phys.abund.Fe)
  Ab6 [-] (n) [4/9.9] Iron abundances (A(Fe)) obtained by the LUMBA method (Note G1)   (phys.abund.Fe)

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