Published July 10, 2013 | Version Submitted + Published
Journal Article Open

Dynamical Modeling of Galaxy Mergers Using Identikit

  • 1. ROR icon University of Virginia
  • 2. ROR icon California Institute of Technology
  • 3. ROR icon University of Hawaii at Manoa
  • 4. ROR icon National Radio Astronomy Observatory
  • 5. ROR icon University of Massachusetts Amherst

Abstract

We present dynamical models of four interacting systems: NGC 5257/8, The Mice, the Antennae, and NGC 2623. The parameter space of the encounters are constrained using the Identikit model-matching and visualization tool. Identikit utilizes hybrid N-body and test particle simulations to enable rapid exploration of the parameter space of galaxy mergers. The Identikit-derived matches of these systems are reproduced with self-consistent collisionless simulations which show very similar results. The models generally reproduce the observed morphology and H I kinematics of the tidal tails in these systems with reasonable properties inferred for the progenitor galaxies. The models presented here are the first to appear in the literature for NGC 5257/8 and NGC 2623, and The Mice and the Antennae are compared with previously published models. Based on the assumed mass model and our derived initial conditions, the models indicate that the four systems are currently being viewed 175-260 Myr after first passage and cover a wide range of merger stages. In some instances there are mismatches between the models and the data (e.g., in the length of a tail); these are likely due to our adoption of a single mass model for all galaxies. Despite the use of a single mass model, these results demonstrate the utility of Identikit in constraining the parameter space for galaxy mergers when applied to real data.

Additional Information

© 2013 American Astronomical Society. Received 2013 February 12; accepted 2013 May 7; published 2013 June 24. The authors thank Francois Schweizer for helpful comments on the manuscript. The authors also thank the anonymous referee for useful comments. G.C.P. and A.S.E. were supported by NSF grants AST 1109475 and 02-06262, and by NASA through grants HST-GO10592.01-A and HST-GO11196.01-A from the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy, Inc., under NASA contract NAS5-26555. This research has made use of the NASA/IPAC Extragalactic Database (NED), which is operated by the Jet Propulsion Laboratory, California Institute of Technology, under contract with the National Aeronautics and Space Administration. This research has made use of NASA's Astrophysics Data System. The National Radio Astronomy Observatory is a facility of the National Science Foundation operated under cooperative agreement by Associated Universities, Inc.

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Published - 0004-637X_771_2_120.pdf

Submitted - 1305.5865v1.pdf

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Additional details

Identifiers

Eprint ID
39834
Resolver ID
CaltechAUTHORS:20130809-102242916

Related works

Funding

NSF
AST-1109475
NSF
AST-0206262
NASA
HST-GO10592.01-A
NASA
HST-GO11196.01-A
NASA
NAS5-26555

Dates

Created
2013-08-12
Created from EPrint's datestamp field
Updated
2021-11-09
Created from EPrint's last_modified field

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