English

The initial luminosity and mass functions of the Galactic open clusters

Astrophysics 2015-05-13 v1

Abstract

(... abridged) The observed luminosity function can be constructed in a range of absolute integrated magnitudes IMV=[10,0.5]I_{M_V}= [-10, -0.5] mag, i.e. about 5 magnitudes deeper than in the most nearby galaxies. It increases linearly from the brightest limit to a turnover at about IMV2.5I_{M_V}\approx-2.5. The slope of this linear portion is a=0.41±0.01a=0.41\pm0.01, which agrees perfectly with the slope deduced for star cluster observations in nearby galaxies. (...) We find that the initial mass function of open clusters (CIMF) has a two-segment structure with the slopes α=1.66±0.14\alpha=1.66\pm0.14 in the range logMc/M=3.37...4.93\log M_c/M_\odot=3.37...4.93 and α=0.82±0.14\alpha=0.82\pm0.14 in the range logMc/M=1.7...3.37\log M_c/M_\odot=1.7...3.37. The average mass of open clusters at birth is 4.5103M4.5\cdot 10^3 M_\odot, which should be compared to the average observed mass of about 700M700 M_\odot. The average cluster formation rate derived from the comparison of initial and observed mass functions is υˉ=0.4kpc2Myr1\bar{\upsilon}=0.4 \mathrm{kpc}^{-2}\mathrm{Myr}^{-1}. Multiplying by the age of the Galactic disc (T = 13 Gyr) the predicted surface density of Galactic disc field stars originating from dissolved open clusters amounts to 22Mpc222 M_\odot \mathrm{pc}^{-2} which is about 40% of the total surface density of the Galactic disc in the solar neighbourhood. Thus, we conclude that almost half of all field stars were born in open clusters, a much higher fraction than previously thought.

Keywords

Cite

@article{arxiv.0806.2217,
  title  = {The initial luminosity and mass functions of the Galactic open clusters},
  author = {A. E. Piskunov and N. V. Kharchenko and E. Schilbach and S. Röser and R. -D. Scholz and H. Zinnecker},
  journal= {arXiv preprint arXiv:0806.2217},
  year   = {2015}
}

Comments

10 pages, 8 figures, accepted for publication in A&A

R2 v1 2026-06-21T10:50:15.984Z