MODEST-1: Integrating Stellar Evolution and Stellar Dynamics
arXiv:astro-ph/0207318 · doi:10.1016/S1384-1076(02)00229-4
Abstract
We summarize the main results from MODEST-1, the first workshop on MOdeling DEnse STellar systems. Our goal is to go beyond traditional population synthesis models, by introducing dynamical interactions between single stars, binaries, and multiple systems. The challenge is to define and develop a software framework to enable us to combine in one simulation existing computer codes in stellar evolution, stellar dynamics, and stellar hydrodynamics. With this objective, the workshop brought together experts in these three fields, as well as other interested astrophysicists and computer scientists. We report here our main conclusions, questions and suggestions for further steps toward integrating stellar evolution and stellar (hydro)dynamics.
workshop summary, to appear in New Astronomy, 36 pages, 3 figures; this slightly revised version mainly contains more references
References in corpus (3)
Cited by in corpus (27)
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- Dynamical Formation of Close Binary Systems in Globular Clusters
- Multi-physics simulations using a hierarchical interchangeable software interface
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- N-body simulations of gravitational dynamics
- A stochastic Monte Carlo approach to model real star cluster evolution, III. Direct integrations of three- and four-body interactions
- Modest-2: A Summary
- Star Cluster Ecology: VII The evolution of young dense star clusters containing primordial binaries
- A New, Efficient Stellar Evolution Code for Calculating Complete Evolutionary Tracks
- XMM-Newton observations of the Galactic globular clusters NGC 2808 and NGC 4372
- Combined Chandra, XMM-Newton and Hubble Space Telescope observations of the Galactic globular cluster NGC 2808
- Star cluster ecology V: Dissection of an open star cluster--spectroscopy
- Modelling Collision Products of Triple-Star Mergers
- Collapses and explosions in self-gravitating systems
- Theory of Stellar Population Synthesis with an application to N-Body simulations
- Simulations of Stellar Collisions Involving Pre-Main Sequence Stars
- Orbital eccentricity of binary radio pulsars in globular clusters and interaction between stars
- Modeling Dense Stellar Systems
- PSDF: Particle Stream Data Format for N-Body Simulations
- Radio pulsar binaries in globular clusters: their orbital eccentricities and stellar interactions
- Tidal Interactions of Red Giants with Environment Stars in Globular Clusters
- Evolution of Star Cluster Within Galaxy using Self-consistent Hybrid Hydro/N-body Simulation
- Neutron Stars and Black Holes in Star Clusters
- The Effect of Pre-Main Sequence Stars on Star Cluster Dynamics
- Building Blue Stragglers with Stellar Collisions
- Modeling Dense Stellar Systems: Background