2015A&A...576A...6P


Query : 2015A&A...576A...6P

2015A&A...576A...6P - Astronomy and Astrophysics, volume 576A, 6-6 (2015/4-1)

ASteCA: Automated Stellar Cluster Analysis.

PERREN G.I., VAZQUEZ R.A. and PIATTI A.E.

Abstract (from CDS):

We present the Automated Stellar Cluster Analysis package (ASteCA), a suit of tools designed to fully automate the standard tests applied on stellar clusters to determine their basic parameters. The set of functions included in the code make use of positional and photometric data to obtain precise and objective values for a given cluster's center coordinates, radius, luminosity function and integrated color magnitude, as well as characterizing through a statistical estimator its probability of being a true physical cluster rather than a random overdensity of field stars. ASteCA incorporates a Bayesian field star decontamination algorithm capable of assigning membership probabilities using photometric data alone. An isochrone fitting process based on the generation of synthetic clusters from theoretical isochrones and selection of the best fit through a genetic algorithm is also present, which allows ASteCA to provide accurate estimates for a cluster's metallicity, age, extinction and distance values along with its uncertainties. To validate the code we applied it on a large set of over 400 synthetic MASSCLEAN clusters with varying degrees of field star contamination as well as a smaller set of 20 observed Milky Way open clusters (Berkeley 7, Bochum 11, Czernik 26, Czernik 30, Haffner 11, Haffner 19, NGC 133, NGC 2236, NGC 2264, NGC 2324, NGC 2421, NGC 2627, NGC 6231, NGC 6383, NGC 6705, Ruprecht 1, Tombaugh 1, Trumpler 1, Trumpler 5 and Trumpler 14) studied in the literature. The results show that ASteCA is able to recover cluster parameters with an acceptable precision even for those clusters affected by substantial field star contamination. ASteCA is written in Python and is made available as an open source code which can be downloaded ready to be used from its official site.

Abstract Copyright:

Journal keyword(s): methods: statistical - galaxies: star clusters: general - open clusters and associations: general - techniques: photometric

Simbad objects: 20

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Number of rows : 20
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 NGC 133 OpC 00 31 12.0 +63 23 49     9.4     ~ 34 0
2 Cl Trumpler 1 OpC 01 35 40 +61 17.0   8.35 8.1     ~ 102 0
3 Cl Berkeley 7 OpC 01 54 11.0 +62 21 58           ~ 44 0
4 NGC 2236 OpC 06 29 39.8 +06 50 02   9.08 8.5     ~ 54 0
5 Cl Czernik 26 OpC 06 31 01 -04 11.0           ~ 19 0
6 Cl Ruprecht 1 OpC 06 36 20.2 -14 09 25           ~ 36 0
7 Cl Trumpler 5 OpC 06 36 30.2 +09 27 54           ~ 122 0
8 NGC 2264 OpC 06 40 52.1 +09 52 37           ~ 1793 0
9 Cl Haffner 1 OpC 07 00 30.2 -20 34 08           ~ 59 0
10 NGC 2324 OpC 07 04 07.9 +01 02 46   8.83 8.4     ~ 159 0
11 Cl Czernik 30 OpC 07 31 11.0 -09 56 42           ~ 41 0
12 ESO 429-3 OpC 07 35 25.2 -27 42 29           ~ 29 0
13 NGC 2421 OpC 07 36 12.2 -20 37 37   8.69 8.3     ~ 60 0
14 Cl Haffner 19 OpC 07 52 46 -26 16.4           ~ 56 0
15 NGC 2627 OpC 08 37 14.2 -29 57 07     8.4     ~ 60 0
16 Cl Trumpler 14 OpC 10 43 56.6 -59 33 11   5.70 5.5     ~ 509 0
17 Cl Bochum 11 OpC 10 47 15.2 -60 05 51           ~ 85 0
18 NGC 6231 OpC 16 54 10.8 -41 48 43           ~ 538 0
19 NGC 6383 OpC 17 34 41.5 -32 34 23           ~ 156 0
20 NGC 6705 OpC 18 51 03.8 -06 16 19   6.32 5.8     ~ 411 0

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