The star formation history of the Large Magellanic Cloud star clusters NGC1846 and NGC1783
arXiv:1301.3381 · doi:10.1093/mnras/stt079
Abstract
NGC1846 and NGC1783 are two massive star clusters in the Large Magellanic Cloud, hosting both an extended main sequence turn-off and a dual clump of red giants. They present similar masses but differ mainly in angular size. Starting from their high-quality ACS data in the F435W, F555W and F814W filters, and updated sets of stellar evolutionary tracks, we derive their star formation rates as a function of age, SFR(t), by means of the classical method of CMD reconstruction which is usually applied to nearby galaxies. The method confirms the extended periods of star formation derived from previous analysis of the same data. When the analysis is performed for a finer resolution in age, we find clear evidence for a 50-Myr long hiatus between the oldest peak in the SFR(t), and a second prolonged period of star formation, in both clusters. For the more compact cluster NGC1846, there seems to be no significant difference between the SFR(t) in the cluster centre and in an annulus with radii between 20 and 60 arcsec (from 4.8 to 15.4 pc). The same does not occur in the more extended NGC1783 cluster, where the outer ring (between 33 and 107 arcsec, from 8.0 to 25.9 pc) is found to be slightly younger than the centre. We also explore the best-fitting slope of the present-day mass function and binary fraction for the different cluster regions, finding hints of a varying mass function between centre and outer ring in NGC1783. These findings are discussed within the present scenarios for the formation of clusters with multiple turn-offs.
16 pages, to appear in MNRAS
References in corpus (13)
- PARSEC: stellar tracks and isochrones with the PAdova and TRieste Stellar Evolution Code
- A double main sequence turn-off in the rich star cluster NGC 1846 in the Large Magellanic Cloud
- New Optical Reddening Maps of the Large and Small Magellanic Clouds
- Multiple stellar populations in three rich Large Magellanic Cloud star clusters
- Multiple stellar populations in Magellanic Clouds clusters. I. An ordinary feature for intermediate age globulars in the LMC?
- Calcium II Triplet Spectroscopy of LMC Red Giants. I. Abundances and Velocities for a Sample of Populous Clusters
- The chemical composition of red giant stars in four intermediate-age clusters of the Large Magellanic Cloud
- The Chemical Enrichment History of the Large Magellanic Cloud
- Why haven't loose globular clusters collapsed yet?
- Discovery of two distinct red clumps in NGC419: a rare snapshot of a cluster at the onset of degeneracy
- Physical parameters of 15 intermediate-age LMC clusters from modelling of HST colour-magnitude diagrams
- The influence of gas expulsion and initial mass-segregation on the stellar mass-function of globular star clusters
- The intermediate-age globular cluster NGC 1783 in the Large Magellanic Cloud
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- On the role of dust and mass loss in the extended main sequence turnoff of star clusters: the case of NGC 1783
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- An Analysis of the Population of Extended Main Sequence Turn-off Clusters in the Large Magellanic Cloud
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- Extended Main-Sequence Turnoff and Red Clump in intermediate-age star clusters: A study of NGC 419
- The Origin of Young Stellar Populations in NGC 1783: Accretion of External Stars