SIMBAD references

2013A&A...554A.129P - Astronomy and Astrophysics, volume 554A, 129-129 (2013/6-1)

Core collapse and horizontal-branch morphology in Galactic globular clusters.

PASQUATO M., RAIMONDO G., BROCATO E., CHUNG C., MORAGHAN A. and LEE Y.-W.

Abstract (from CDS):

Stellar collision rates in globular clusters (GCs) do not appear to correlate with horizontal branch (HB) morphology, suggesting that dynamics does not play a role in the second-parameter problem. However, core densities and collision rates derived from surface-brightness may be significantly underestimated as the surface-brightness profile of GCs is not necessarily a good indicator of the dynamical state of GC cores. Core-collapse may go unnoticed if high central densities of dark remnants are present. We test whether GC HB morphology data supports a dynamical contribution to the so-called second-parameter effect.To remove first-parameter dependence we fitted the maximum effective temperature along the HB as a function of metallicity in a sample of 54 Milky Way GCs. We plotted the residuals to the fit as a function of second-parameter candidates, namely dynamical age and total luminosity. We considered dynamical age (i.e. the ratio between age and half-light relaxation time) among possible second-parameters. We used a set of direct N-body simulations, including ones with dark remnants to illustrate how core density peaks, due to core collapse, in a dynamical-age range similar to that in which blue HBs are overabundant with respect to the metallicity expectation, especially for low-concentration initial conditions. GC total luminosity shows nonlinear behavior compatible with the self-enrichment picture. However, the data are amenable to a different interpretation based on a dynamical origin of the second-parameter effect. Enhanced mass-stripping in the late red-giant-branch phase due to stellar interactions in collapsing cores is a viable candidate mechanism. In this picture, GCs with HBs bluer than expected based on metallicity are those undergoing core-collapse.

Abstract Copyright:

Journal keyword(s): methods: statistical - methods: numerical - globular clusters: general - stars: evolution - stars: mass-loss

Simbad objects: 4

goto Full paper

goto View the references in ADS

To bookmark this query, right click on this link: simbad:2013A&A...554A.129P and select 'bookmark this link' or equivalent in the popup menu