We present Eashington system colour-magnitude diagramsfor 8 stars clusters and their surrounding fields which, with one exception, lie within the inner parts of the Large Magellanic Cloud (LMC) disc. Careful attention is paid to separating out the cluster and field star distributions. Ages and metallicities are then determined in a consistent manner for both populations in two different ways. We first compare the colour-magnitude diagrams (CMDs) with new theoretical isochrones in the Washington system. We also derive ages using the magnitude difference between the red clump and the turnoff, and derive metallicities by comparing the giant branches to standard calibrating clusters. For this latter mtallcitiy derivation, we present age-cdepend...
We present CCD Washington photometry of 11 Small Magellanic Cloud (SMC) clusters for which age and m...
Colour–magnitude diagrams (CMDs) are presented for the first time for 10 star clusters projected on ...
Aims. To enlarge our growing sample of well-studied star clusters in the Large Magellanic Cloud (LMC...
We present Eashington system colour-magnitude diagramsfor 8 stars clusters and their surrounding fie...
We present Washington system colour–magnitude diagrams for 8 star clusters and their surrounding fie...
We present Washington system colour–magnitude diagrams for 8 star clusters and their surrounding fie...
We present Washington system colour–magnitude diagrams for 8 star clusters and their surrounding fie...
We present Washington system colour-magnitude diagrams (CMDs) for 17 practically unstudied star clus...
Aims. We study 147 star clusters in the Large Magellanic Cloud (LMC) in order to determine their mea...
We present Washington system CT1 color-magnitude diagrams of 13 star clusters and their surrounding ...
We present Washington system CT1 color-magnitude diagrams of 13 star clusters and their surrounding ...
We present Washington system CT1 color-magnitude diagrams of 13 star clusters and their surrounding ...
We analyze age and metallicity estimates for an unprecedented database of some 5.5 million stars dis...
We derive photometric metallicities for 56 intermediate-age and old star clusters in the Large Magel...
Complementing our recent Washington photometric studies on intermediate age and young Large Magellan...
We present CCD Washington photometry of 11 Small Magellanic Cloud (SMC) clusters for which age and m...
Colour–magnitude diagrams (CMDs) are presented for the first time for 10 star clusters projected on ...
Aims. To enlarge our growing sample of well-studied star clusters in the Large Magellanic Cloud (LMC...
We present Eashington system colour-magnitude diagramsfor 8 stars clusters and their surrounding fie...
We present Washington system colour–magnitude diagrams for 8 star clusters and their surrounding fie...
We present Washington system colour–magnitude diagrams for 8 star clusters and their surrounding fie...
We present Washington system colour–magnitude diagrams for 8 star clusters and their surrounding fie...
We present Washington system colour-magnitude diagrams (CMDs) for 17 practically unstudied star clus...
Aims. We study 147 star clusters in the Large Magellanic Cloud (LMC) in order to determine their mea...
We present Washington system CT1 color-magnitude diagrams of 13 star clusters and their surrounding ...
We present Washington system CT1 color-magnitude diagrams of 13 star clusters and their surrounding ...
We present Washington system CT1 color-magnitude diagrams of 13 star clusters and their surrounding ...
We analyze age and metallicity estimates for an unprecedented database of some 5.5 million stars dis...
We derive photometric metallicities for 56 intermediate-age and old star clusters in the Large Magel...
Complementing our recent Washington photometric studies on intermediate age and young Large Magellan...
We present CCD Washington photometry of 11 Small Magellanic Cloud (SMC) clusters for which age and m...
Colour–magnitude diagrams (CMDs) are presented for the first time for 10 star clusters projected on ...
Aims. To enlarge our growing sample of well-studied star clusters in the Large Magellanic Cloud (LMC...