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N-body simulations of galaxy clustering. I - Initial conditions and galaxy collapse times

The Astrophysical JournalPublished 1 March 1979
S. J. Aarseth, Edwin L. Turner, III Gott J. R.
Citations101
SJR quartileQ1
SJR score2.04
SNIP1.25

Abstract

view Abstract Citations (148) References (45) Co-Reads Similar Papers Volume Content Graphics Metrics Export Citation NASA/ADS N-body simulations of galaxy clustering. I. Initial conditions and galaxy collapse times. Aarseth, S. J. ; Gott, J. R., III ; Turner, E. L. Abstract N-body simulations of galaxy clustering in an expanding universe are described which typically start with 1000 point masses (representing galaxies) in initially random distributions and participating in the Hubble flow. In these simulations, small density fluctuations grow via gravitational instability, some eventually collapse to form bound clusters, and after sufficient time has elapsed, the model's galaxies are clustered in a manner similar to that observed in the real universe. The question of whether the observed distribution of glaxies can be effectively explained by the simple gravitational-instability picture is considered, and the sensitivity of the clustering to initial conditions is evaluated. The clusterings in simulations with the cosmological density parameter (Omega) equal to unity and 0.1 are compared. A typical collapse time of about 2 to 3 billion years is estimated for the galaxies and shown to be in agreement with other lines of evidence. Publication: The Astrophysical Journal Pub Date: March 1979 DOI: 10.1086/156892 Bibcode: 1979ApJ...228..664A Keywords: Computerized Simulation; Cosmology; Galactic Clusters; Gravitational Collapse; Many Body Problem; Stellar Motions; Astronomical Models; Radial Velocity; Red Shift; Statistical Distributions; Universe; Astrophysics; Clusters of Galaxies:Formation; Clusters of Galaxies:N-Body Problem; Galaxy Clustering:Universe full text sources ADS |

Keywords

Physics and Astronomy