An optical and near IR study of the old open cluster NGC 2141
G. Carraro, S. M. Hassan, S. Ortolani, A. Vallenari
Abstract
Open-access reader
G. Carraro, S. M. Hassan, S. Ortolani, A. Vallenari
Abstract
Open-access reader
We report CCD optical (B and V passbands) and near IR (J and K bands) observations in the region of the old open cluster NGC 2141. By combining the two sets of photometry (500 stars in common) we derive new estimates of the cluster's fundamental parameters. We confirm that the cluster is 2.5 Gyrs old, but, with respect to previous investigations, we obtain a slightly larger reddening (), and a slightly shorter distance (3.8 kpc) from the Sun. Finally, we present the Luminosity Function (LF) in the V band, which is another age indicator. We provide a good fit for the age range inferred from isochrones by assuming the Kroupa et al. ([CITE]) IMF up to MV = 5.0. We interpret the disagreement at fainter magnitudes as evidence of mass segregation.
OpenAlex reports 21 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
We report CCD optical (B and V passbands) and near IR (J and K bands) observations in the region of the old open cluster NGC 2141. By combining the two sets of photometry (500 stars in common) we derive new estimates of the cluster's fundamental parameters. We confirm that the cluster is 2.5 Gyrs old, but, with respect to previous investigations, we obtain a slightly larger reddening (), and a slightly shorter distance (3.8 kpc) from the Sun. Finally, we present the Luminosity Function (LF) in the V band, which is another age indicator. We provide a good fit for the age range inferred from isochrones by assuming the Kroupa et al. ([CITE]) IMF up to MV = 5.0. We interpret the disagreement at fainter magnitudes as evidence of mass segregation.
Key concepts: Open cluster, Photometry (optics), Physics, Astrophysics, Cluster (spacecraft), Stars, Initial mass function, Mass segregation