COCOA Code for Creating Mock Observations of Star Cluster Models
arXiv:1703.09160 · doi:10.1093/mnras/sty101
Abstract
We introduce and present results from the COCOA (Cluster simulatiOn Comparison with ObservAtions) code that has been developed to create idealized mock photometric observations using results from numerical simulations of star cluster evolution. COCOA is able to present the output of realistic numerical simulations of star clusters carried out using Monte Carlo or \textit{N}-body codes in a way that is useful for direct comparison with photometric observations. In this paper, we describe the COCOA code and demonstrate its different applications by utilizing globular cluster (GC) models simulated with the MOCCA (MOnte Carlo Cluster simulAtor) code. COCOA is used to synthetically observe these different GC models with optical telescopes, perform PSF photometry and subsequently produce observed colour magnitude diagrams. We also use COCOA to compare the results from synthetic observations of a cluster model that has the same age and metallicity as the Galactic GC NGC 2808 with observations of the same cluster carried out with a 2.2 meter optical telescope. We find that COCOA can effectively simulate realistic observations and recover photometric data. COCOA has numerous scientific applications that maybe be helpful for both theoreticians and observers that work on star clusters. Plans for further improving and developing the code are also discussed in this paper.
18 pages, 12 figures, accepted for publication in MNRAS. Revised manuscript has a new title, better quality figures and many other improvements. COCOA can be downloaded from: https://github.com/abs2k12/COCOA (comments are welcome)
References in corpus (10)
- GALEV evolutionary synthesis models - I. Code, input physics and web-interface
- On the initial binary population for star cluster simulations
- The state of globular clusters at birth II: primordial binaries
- Mass Evaporation Rate of Globular Clusters in a Strong Tidal Field
- MOCCA-SURVEY database I. Accreting white dwarf binary systems in globular clusters -- I. cataclysmic variables -- present-day population
- MOCCA-SURVEY Database I: Is NGC 6535 a Dark Star Cluster Harboring an IMBH?
- Prospects for detection of intermediate-mass black holes in globular clusters using integrated-light spectroscopy
- Testing lowered isothermal models with direct N-body simulations of globular clusters - II: Multimass models
- Testing multi-mass dynamical models of star clusters with real data: mass segregation in three Galactic globular clusters
- Effect of dynamical interactions on integrated properties of globular clusters
Cited by in corpus (4)
- On the initial binary population for star cluster simulations
- Dynamical modelling of globular clusters: challenges for the robust determination of IMBH candidates
- Using Binaries in Globular Clusters to Catch Sight of Intermediate-Mass Black Holes
- MOCCA survey database I: preliminary mock Extra Galactic Globular Cluster observations