2012A&A...543A...8M


Query : 2012A&A...543A...8M

2012A&A...543A...8M - Astronomy and Astrophysics, volume 543A, 8-8 (2012/7-1)

Inverse dynamical population synthesis. Constraining the initial conditions of young stellar clusters by studying their binary populations.

MARKS M. and KROUPA P.

Abstract (from CDS):

Binary populations in young star clusters show multiplicity fractions both lower and up to twice as high as those observed in the Galactic field. We follow the evolution of a population of binary stars in dense and loose star clusters starting with an invariant initial binary population and a formal multiplicity fraction of unity, and demonstrate that these models can explain the observed binary properties in Taurus, ρ Ophiuchus, Chamaeleon, Orion, IC348, Upper Scorpius A, Praesepe, and the Pleiades. The model needs to consider solely different birth densities for these regions. The evolved theoretical orbital-parameter distributions are highly probable parent distributions for the observed ones. We constrain the birth conditions (stellar mass, Mecl, and half-mass radius, rh) for the derived progenitors of the star clusters and the overall present-day binary fractions allowed by the present model. The results compare very well with properties of molecular cloud clumps on the verge of star formation. Combining these with previously and independently obtained constraints on the birth densities of globular clusters, we identify a weak stellar mass - half-mass radius correlation for cluster-forming cloud clumps, rh/pc∝(Mecl/M)0.13±0.04. The ability of the model to reproduce the binary properties in all the investigated young objects, covering present-day densities from 1-10 stars/pc3 (Taurus) to 2x104stars/pc3 (Orion), suggests that environment-dependent dynamical evolution plays an important role in shaping the present-day properties of binary populations in star clusters, and that the initial binary properties may not vary dramatically between different environments.

Abstract Copyright:

Journal keyword(s): binaries: general - open clusters and associations: general - globular clusters: general - galaxies: star clusters: general - methods: numerical

Simbad objects: 16

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Number of rows : 16
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 IC 348 OpC 03 44 31.7 +32 09 32           ~ 1393 1
2 Cl Melotte 22 OpC 03 46 24.2 +24 06 50           ~ 3436 0
3 NAME Taurus Complex SFR 04 41.0 +25 52           ~ 4417 0
4 NAME Orion Nebula Cluster OpC 05 35.0 -05 29           ~ 2332 0
5 NAME Ori Trapezium OpC 05 35 16.5 -05 23 14           ~ 1619 1
6 NAME Ori Complex Cld 05 35.3 -05 23           ~ 441 0
7 NGC 2024 Cl* 05 41 43 -01 50.5           ~ 1154 1
8 NGC 2632 OpC 08 40 13.0 +19 37 16           ~ 1566 0
9 NGC 3256 Sy2 10 27 51.284 -43 54 13.55   11.83 11.33 10.62 11.9 ~ 848 2
10 NAME Cha 1 MoC 11 06 48 -77 18.0           ~ 1154 1
11 NAME Chamaeleon Region SFR 11 55 -78.0           ~ 806 0
12 NAME Cha II MoC 12 54 -77.2           ~ 337 0
13 M 51 Sy2 13 29 52.698 +47 11 42.93   9.26 8.36 8.40   ~ 4330 4
14 NAME Upper Sco Association As* 16 12 -23.4           ~ 1369 1
15 NAME Ophiuchus Molecular Cloud SFR 16 28 06 -24 32.5           ~ 3631 1
16 NAME Upper Scorpius A As* ~ ~           ~ 16 0

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