The evolution of luminosity, colour and the mass-to-luminosity ratio of Galactic open clusters: comparison of discrete vs. continuous IMF models
A. E. Piskunov, N. V. Kharchenko, E. Schilbach, S. R\"oser, R.-D., Scholz, H. Zinnecker

TL;DR
This study models the evolution of Galactic open clusters' luminosity, colour, and mass-to-luminosity ratio using discrete and continuous IMF models, revealing the impact of IMF discreteness and dynamical mass loss on observable properties.
Contribution
It introduces a numerical SSP-model with an underlying Salpeter IMF that accounts for IMF discreteness and dynamical mass loss, providing new insights into cluster evolution and observable features.
Findings
Discreteness of IMF causes bursts in cluster colours and magnitudes.
Lowering the lower mass limit amplifies discreteness effects.
Dynamical mass loss slightly alters colour and magnitude relations.
Abstract
(abridged) We found in previous studies that standard Simple Stellar Population (SSP) models are unable to describe or explain the colours of Galactic open clusters both in the visible and in the NIR spectral range. (...) We construct a numerical SSP-model, with an underlying Salpeter IMF, valid within an upper and lower stellar mass range, and with total masses typical of open clusters. We assume that the mass loss from a cluster is provided by mass loss from evolved stars and by the dynamical evaporation of low-mass members due to two-body relaxation. The data for the latter process were scaled to the models from high-resolution N-body calculations. We also investigate how a change of the -limit influences magnitudes and colours of clusters of a given mass and derive a necessary condition for a luminosity and colour flash. The discreteness…
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Taxonomy
TopicsStellar, planetary, and galactic studies · Astronomy and Astrophysical Research · Astrophysics and Star Formation Studies
