VizieR

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

VizieR

  
J/A+A/558/A103
  Stellar models with rotation. 0.8<M<120, Z=0.002 (Georgy+, 2013) (files.tar)
model
Post annotation
  
1.J/A+A/558/A103/tablesEvolutionary tracks (19200 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)
  Mini Msun [0.8/120] Initial mass (phys.mass)
  track  Evolutionary track for this mass (meta.ref.url)
model
  Zini   [0.002] Initial metallicity (phys.abund.Z)
  Rot (char) [nr] r for rotation, n for no rotation (meta.code)
  Line   [1/400] Number of selected point (meta.id)
  Time yr Age (time.age)
  Mass Msun Actual mass (phys.mass)
  logL [Lsun] Luminosity in log scale (phys.luminosity)
  logTe [K] Effective temperature in log scale (phys.temperature.effective;instr.scale)
  X  H surface abundance (mass fraction) (phys.abund.Fe)

ALL cols
    
 (i)indexed column
  Y  He surface abundance (mass fraction) (phys.abund.Y)
  C12  12C surface abundance (mass fraction) (meta.note)
  C13  13C surface abundance (mass fraction) (meta.note)
  N14  14N surface abundance (mass fraction) (meta.note)
  O16  16O surface abundance (mass fraction) (meta.note)
  O17  17O surface abundance (mass fraction) (meta.note)
  O18  18O surface abundance (mass fraction) (meta.note)
  Ne20  20Ne surface abundance (mass fraction) (meta.note)
  Ne22  22Ne surface abundance (mass fraction) (meta.note)
  Al26  26Al surface abundance (mass fraction) (phys.abund)
  QCC  Convective core mass fraction (phys.mass)
  logTe.u [K] Uncorrected effective temperature in log scale (WR stars only) (phys.temperature.effective)
  logdM/dt [Msun/yr]Mass loss rate in log scale (phys.mass.loss)

ALL cols
    
 (i)indexed column
  log(rhoc) [g/cm3] Central density in log scale (instr.scale)
  logTc [K] Central temperature in log scale (instr.scale)
  Xc  H central abundance (mass fraction) (phys.abund.Fe)
  Yc  4He central abundance (mass fraction) (phys.abund;em.wl.central)
  C12c  12C central abundance (mass fraction) (phys.abund;em.wl.central)
  C13c  13C central abundance (mass fraction) (phys.abund;em.wl.central)
  N14c  14N central abundance (mass fraction) (phys.abund;em.wl.central)
  O16c  16O central abundance (mass fraction) (phys.abund;em.wl.central)
  O17c  17O central abundance (mass fraction) (phys.abund;em.wl.central)
  O18c  18O central abundance (mass fraction) (phys.abund;em.wl.central)
  Ne20c  20Ne central abundance (mass fraction) (phys.abund;em.wl.central)
  Ne22c  22Ne central abundance (mass fraction) (phys.abund;em.wl.central)
  Al26c  26Al central abundance (mass fraction) (phys.abund)

ALL cols
    
 (i)indexed column
  Omegas rad/s Surface angular velocity Ωs (phys.veloc.ang)
  Omegac rad/s Central angular velocity Ωc (phys.veloc.ang)
  oblat   [0/1] Oblateness (Rpol/Req) (phys.size;arith.ratio)
  dM/dtR  Rotational dM/dt correction factor (phys.mass.loss)
  vcrit1 km/s First critical velocity (Ω-limit) (phys.veloc)
  vcrit2 km/s Second critical velocity (ΩΓ-limit) (phys.veloc)
  veq km/s Equatorial velocity (phys.veloc.rotat)
  OOc   [0/1] Ωsurfcrit (stat.fit.param)
  Gedd   [0/1] Eddington factor Γ (phys.luminosity;arith.ratio)
  dM/dtm Msun/yr Mechanical equatorial dM/dt (phys.mass.loss)
  Ltot 10+53g.cm2/sTotal angular momentum (phys.angMomentum)

ALL cols
    
 (i)indexed column
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