Multi-object Spectroscopy of Young Star Clusters in NGC 4676
arXiv:astro-ph/0703510 · doi:10.1086/518215
Abstract
Galaxy interactions are known to trigger starbursts. The young star clusters formed in mergers may be young globular clusters. The ages of these young star clusters yield the timing of interaction-triggered star formation and provide an important way to reconstruct the history of merging galaxies. Here we present the first results from our investigation into age and metallicity of twelve young clusters in the merging galaxy pair NGC 4676, using spectra from the multi-object Low Resolution Imaging Spectrometer (LRIS) on Keck. For ten clusters, comparison of the Balmer emission lines with model equivalent widths (EWs) yields ages less than 10 Myr. Two spectra display Balmer absorption lines typical of star clusters dominated by A-type stars, with estimated ages of about 170 Myr. These ages are comparable to the dynamical age of the tidal tails and are consistent with star formation triggered during the first passage of the pair. The locations of these two clusters in the tidal tails are generally consistent with predictions of shock-induced star formation models. One of these older objects appears unresolved on the image and is luminous enough to qualify as a young globular cluster. Using EWs of the diagnostic lines [OII] and [OIII], we obtain oxygen abundances in the range 7.3 < 12+log(O/H) < 9.0. These values show a nearly flat distribution along the northern tail, suggesting efficient gas mixing in the tail.
4 pages, 1 figure, accepted for publication in ApJ Letter
References in corpus (1)
Cited by in corpus (10)
- Star formation triggered by galaxy interactions in modified gravity
- The Mice at play in the CALIFA survey: A case study of a gas-rich major merger between first passage and coalescence
- Interaction effects on galaxy pairs with Gemini/GMOS- II: Oxygen abundance gradients
- Massive Star Cluster Formation and Destruction in Luminous Infrared Galaxies in GOALS
- Interaction effects on galaxy pairs with GeminiGMOS-III: Stellar population synthesis
- Ionizing stellar population in the disc of NGC 3310 - II. The Wolf-Rayet population
- Turbulence and Star Formation in a Sample of Spiral Galaxies
- Physical and kinematic conditions of the local merging galaxy NGC 1487
- Clues on Arp 142: The Spiral-Elliptical merger
- A MUSE view of the multiple interacting system HCG 31