2006AJ....132..253S


Query : 2006AJ....132..253S

2006AJ....132..253S - Astron. J., 132, 253-270 (2006/July-0)

The secrets of the nearest starburst cluster. II. The present-day mass function in NGC 3603.

STOLTE A., BRANDNER W., BRANDL B. and ZINNECKER H.

Abstract (from CDS):

Based on deep Very Large Telescope Infrared Spectrometer and Array Camera JHK photometry, we have derived the present-day mass function (MF) of the central starburst cluster NGC 3603 YC (Young Cluster) in the giant H II region NGC 3603. The effects of field contamination, individual reddening, and a possible binary contribution are investigated. The MF slopes resulting from the different methods are compared and lead to a surprisingly consistent cluster MF with a slope of Γ=-0.9±0.15. Analyzing different radial annuli around the cluster core, no significant change in the slope of the MF is observed. However, mass segregation in the cluster is evidenced by the increasing depletion of the high-mass tail of the stellar mass distribution with increasing radius. We discuss the indications of mass segregation with respect to the changes observed in the binned and cumulative stellar MFs and argue that the cumulative function, as well as the fraction of high- to low-mass stars, provides better indicators for mass segregation than the MF slope alone. Finally, the observed MF and starburst morphology of NGC 3603 YC are discussed in the context of massive local star-forming regions such as the Galactic center Arches cluster, R136/30 Dor in the LMC, and the Orion Trapezium cluster, all providing resolved templates for extragalactic star formation. Despite the similarity in the observed MF slopes, dynamical considerations suggest that the starburst clusters do not form gravitationally bound systems over a Hubble time. Both the environment (gravitational potential of the Milky Way) and the concentration of stars in the cluster core determine the dynamical stability of a dense star cluster, such that the long-term evolution of a starburst is not exclusively determined by the stellar evolution of its members, as frequently assumed for globular cluster systems.

Abstract Copyright:

Journal keyword(s): Galaxy: Open Clusters and Associations: Individual: NGC Number: NGC 3603 - open clusters and associations: individual (HD 97950) - Stars: Luminosity Function, Mass Function - Stars: Pre-Main-Sequence

Simbad objects: 13

goto Full paper

goto View the references in ADS

Number of rows : 13
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 NAME LMC G 05 23 34.6 -69 45 22     0.4     ~ 17478 0
2 NAME Orion Nebula Cluster OpC 05 35.0 -05 29           ~ 2334 0
3 NAME Ori Trapezium OpC 05 35 16.5 -05 23 14           ~ 1621 1
4 NAME 30 Dor Nebula SFR 05 38 36.0 -69 05 11           ~ 1190 2
5 RMC 136 Cl* 05 38 42.396 -69 06 03.36   5.81 5.40     ~ 2019 2
6 NAME Car Arm PoG 10 00 -60.0           ~ 440 1
7 HD 97950 Cl* 11 15 07.346 -61 15 38.52 9.64 9.83 9.03 9.69   ~ 192 2
8 NGC 3603 OpC 11 15 10.8 -61 15 32           ~ 1068 1
9 NGC 4038 EmG 12 01 53.002 -18 52 03.32   10.91   9.74 11.0 ~ 1334 1
10 NAME Antennae IG 12 01 53.170 -18 52 37.92           ~ 1695 0
11 NGC 4039 GiP 12 01 53.51 -18 53 10.3   11.08   9.77   ~ 1161 1
12 NAME Galactic Center reg 17 45 39.60213 -29 00 22.0000           ~ 14463 0
13 NAME Arches Cluster Cl* 17 45 50.5 -28 49 28           ~ 739 0

To bookmark this query, right click on this link: simbad:objects in 2006AJ....132..253S and select 'bookmark this link' or equivalent in the popup menu