A Monte Carlo simulation exploring uncertainties in standard stellar
evolution theory on the red giant branch of metal-poor globular clusters has
been conducted. Confidence limits are derived on the absolute V-band magnitude
of the bump in the red giant branch luminosity function (M_v,b) and the excess
number of stars in thebump, R_b. The analysis takes into account uncertainties
in the primordial helium abundance, abundance of alpha-capture elements,
radiative and conductive opacities, nuclear reaction rates, neutrino energy
losses, the treatments of diffusion and convection, the surface boundary
conditions, and color transformations.
The uncertainty in theoretical values for the red giant bump magnitude varies
with metallicity between +0.13/-0.12 mag at [Fe/H] = -2.4 and +0.23/-0.21 mag
at [Fe/H] = -1.0.Thedominantsourcesofuncertaintyaretheabundanceofthealpha−captureelements,themixinglength,andthelow−temperatureopacities.ThetheoreticalvaluesofMv,bareingoodagreementwithobservations.TheuncertaintyinthetheoreticalvalueofRbis+/−0.01atallmetallicitiesstudied.Thedominantsourcesofuncertaintyaretheabundanceofthealpha−captureelements,themixinglength,andthehigh−temperatureopacities.ThemedianvalueofRbvariesfrom0.44at[Fe/H]=−2.4 to 0.50 at [Fe/H] =
-1.0. These theoretical values for R_b are in agreement with observations.Comment: 30 pages, 6 figures. To appear in Ap