Globular cluster mass-loss in the context of multiple populations

被引:86
作者
Bastian, Nate [1 ]
Lardo, Carmela [1 ]
机构
[1] Liverpool John Moores Univ, Astrophys Res Inst, Liverpool L3 5RF, Merseyside, England
基金
欧洲研究理事会;
关键词
globular clusters: general; SELF-ENRICHMENT SCENARIOS; LARGE-MAGELLANIC-CLOUD; STELLAR POPULATIONS; CHEMICAL-COMPOSITION; DYNAMICAL EVOLUTION; ABUNDANCE PATTERNS; HORIZONTAL-BRANCH; STAR-CLUSTERS; GIANT STARS; MILKY-WAY;
D O I
10.1093/mnras/stv1661
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Many scenarios for the origin of the chemical anomalies observed in globular clusters (GCs; i.e. multiple populations) require that GCs were much more massive at birth, up to 10-100 times, than they are presently. This is invoked in order to have enough material processed through first generation stars in order to form the observed numbers of enriched stars (inferred to be second generation stars in these models). If such mass-loss was due to tidal stripping, gas expulsion, or tidal interaction with the birth environment, there should be clear correlations between the fraction of enriched stars and other cluster properties, whereas the observations show a remarkably uniform enriched fraction of 0.68 +/- 0.07 (from 33 observed GCs). If interpreted in the heavy mass-loss paradigm, this means that all GCs lost the same fraction of their initial mass (between 95 and 98 per cent), regardless of their mass, metallicity, location at birth or subsequent migration, or epoch of formation. This is incompatible with predictions, hence we suggest that GCs were not significantly more massive at birth, and that the fraction of enriched to primordial stars observed in clusters today likely reflects their initial value. If true, this would rule out self-enrichment through nucleosynthesis as a viable solution to the multiple population phenomenon.
引用
收藏
页码:357 / 364
页数:8
相关论文
共 78 条
[1]  
[Anonymous], 2013, Mem. Soc. Astron. Ital, DOI DOI 10.48550/ARXIV.1302.0329
[3]   Constraining globular cluster formation through studies of young massive clusters - I. A lack of ongoing star formation within young clusters [J].
Bastian, N. ;
Cabrera-Ziri, I. ;
Davies, B. ;
Larsen, S. S. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2013, 436 (03) :2852-2863
[4]   Early disc accretion as the origin of abundance anomalies in globular clusters [J].
Bastian, N. ;
Lamers, H. J. G. L. M. ;
de Mink, S. E. ;
Longmore, S. N. ;
Goodwin, S. P. ;
Gieles, M. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2013, 436 (03) :2398-2411
[5]   A general abundance problem for all self-enrichment scenarios for the origin of multiple populations in globular clusters [J].
Bastian, Nate ;
Cabrera-Ziri, Ivan ;
Salaris, Maurizio .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2015, 449 (03) :3333-3346
[6]   A Universal Stellar Initial Mass Function? A Critical Look at Variations [J].
Bastian, Nate ;
Covey, Kevin R. ;
Meyer, Michael R. .
ANNUAL REVIEW OF ASTRONOMY AND ASTROPHYSICS, VOL 48, 2010, 48 :339-389
[7]   Dynamical evolution of star clusters in tidal fields [J].
Baumgardt, H ;
Makino, J .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2003, 340 (01) :227-246
[8]   Extragalactic globular clusters and galaxy formation [J].
Brodie, Jean P. ;
Strader, Jay .
ANNUAL REVIEW OF ASTRONOMY AND ASTROPHYSICS, 2006, 44 :193-267
[9]   Constraining globular cluster formation through studies of young massive clusters - V. ALMA observations of clusters in the Antennae [J].
Cabrera-Ziri, I. ;
Bastian, N. ;
Longmore, S. N. ;
Brogan, C. ;
Hollyhead, K. ;
Larsen, S. S. ;
Whitmore, B. ;
Johnson, K. ;
Chandar, R. ;
Henshaw, J. D. ;
Davies, B. ;
Hibbard, J. E. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2015, 448 (03) :2224-2231
[10]   Constraining globular cluster formation through studies of young massive clusters - II. A single stellar population young massive cluster in NGC 34 [J].
Cabrera-Ziri, I. ;
Bastian, N. ;
Davies, B. ;
Magris, G. ;
Bruzual, G. ;
Schweizer, F. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2014, 441 (03) :2754-2759