N-body simulation of the Stephan's Quintet
arXiv:1009.2740 · doi:10.1088/0004-637X/724/1/80
Abstract
The evolution of compact groups of galaxies may represent one of the few places in the nearby universe in which massive galaxies are being forged through a complex set of processes involving tidal interaction, ram-pressure stripping, and perhaps finally "dry-mergers" of galaxies stripped of their cool gas. Using collisionless N-body simulations, we propose a possible scenario for the formation of one of the best studied compact groups: Stephan's Quintet. We define a serial approach which allows us to consider the history of the group as sequence of galaxy-galaxy interactions seen as relatively separate events in time, but chained together in such a way as to provide a plausible scenario that ends in the current configuration of the galaxies. By covering a large set of parameters, we claim that it is very unlikely that both major tidal tails of the group have been created by the interaction between the main galaxy and a single intruder. We propose instead a scenario based on two satellites orbiting the main disk, plus the recent involvement of an additional interloper, coming from the background at high speed. This purely N-body study of the quintet will provide a parameter-space exploration of the basic dynamics of the group that can be used as a basis for a more sophisticated N-body/hydrodynamic study of the group that is necessary to explain the giant shock structure and other purely gaseous phenomena observed in both the cold, warm and hot gas in the group.
13 pages, 13 figures. Accepted for publication in ApJ
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Cited by in corpus (27)
- Shock-Enhanced C+ Emission and the Detection of H2O from Stephan's Quintet's Group-Wide Shock using Herschel
- Turbulent molecular gas and star formation in the shocked intergalactic medium of Stephan's Quintet
- Low-power jet-ISM interaction in NGC 7319 revealed by JWST/MIRI MRS
- Powerful H2 Line Cooling in Stephan's Quintet II. Group-wide Gas and Shock Modeling of the Warm H2 and a Comparison with [CII]157.7um Emission and Kinematics
- Two long HI tails in the outskirts of Abell 1367
- Tides in colliding galaxies
- Star Clusters as Tracers of Interactions in Stephan's Quintet (Hickson Compact Group 92)
- Galactic ménage à trois: Simulating magnetic fields in colliding galaxies
- Cosmic Train Wreck by Massive Black Holes: Discovery of a kpc-Scale Triple Active Galactic Nucleus
- Revisiting Stephan's Quintet with deep optical images
- Shocks and Star Formation in Stephan's Quintet. I. Gemini Spectroscopy of Hα-bright knots
- Models of Stephan's Quintet: Hydrodynamic Constraints on the Group's Evolution
- A Trio of Massive Black Holes Caught in the Act of Merging
- Galaxy Zoo: Multi-Mergers and the Millennium Simulation
- The H kinematics of interacting galaxies in 12 compact groups
- Star formation in HI tails: HCG 92, HCG 100 and 6 interacting systems
- A dynamical model for the Taffy galaxies UGC 12914/5
- Intergalactic magnetic fields in Stephan's Quintet
- Searching for intergalactic star forming regions in Stephan's Quintet with SITELLE. I. Ionised gas structures and kinematics
- Gemini Spectroscopic Survey of Young Star Clusters in Merging/Interacting Galaxies. IV. Stephan's Quintet
- The Cosmic Evolution of Halo Pairs: I. Global Trends
- The quenching of star formation in accretion-driven clumpy turbulent tori of active galactic nuclei
- Synthetic X-ray and radio maps for two different models of Stephan's Quintet
- Extremely broad Lyman-alpha line emission from the molecular intra-group medium in Stephan's Quintet: evidence for a turbulent cascade in a highly clumpy multi-phase medium?
- Gas and stellar dynamics in Stephan's Quintet: Mapping the kinematics in a closely interacting compact galaxy group
- Searching for intergalactic star forming regions in Stephan's Quintet with SITELLE: II. Physical properties and metallicity
- Redshift effects implications on revised models of Stephan's quintet