NGC 3934: a shell galaxy in a compact galaxy environment
arXiv:1108.5879 · doi:10.1051/0004-6361/201117106
Abstract
We investigate the NGC 3933 poor galaxy association, that contains NGC 3934, which is classified as a polar-ring galaxy. The multi-band photometric analysis of NGC 3934 allows us to investigate the nature of this galaxy and to re-define the NGC 3933 group members with the aim to characterize the group dynamical properties and its evolutionary phase. We imaged the group in the far (FUV,lambda = 1530A) and near (NUV, lambda=2316A) ultraviolet (UV) bands of the Galaxy Evolution Explorer (GALEX). From the deep optical imaging we determined the fine structure of NGC 3934. We measured the recession velocity of PGC 213894 which shows that it belongs to the NGC 3933 group. We derived the spectral energy distribution (SED) from FUV (GALEX) to far-IR emission of the two brightest members of the group. We compared a grid of smooth particle hydrodynamical (SPH) chemo-photometric simulations with the SED and the integrated properties of NGC 3934 and NGC 3933 to devise their possible formation/evolutionary scenarios. The NGC 3933 group has six bright members: a core composed of five galaxies, which have Hickson's compact group characteristics, and a more distant member, PGC 37112. The group velocity dispersion is relatively low (157+-44 km s-1). The projected mass, from the NUV photometry, is ~710^12 M\odot with a crossing time of 0.04 Hubble times, suggesting that at least in the center the group is virialized. We do not find evidence that NGC 3934 is a polar-ring galaxy, as suggested by the literature, but find that it is a disk galaxy with a prominent dust-lane structure and a wide type-II shell structure. NGC 3934 is a quite rare example of a shell galaxy in a likely dense galaxy region. The comparison between physically motivated SPH simulations with multi-band integrated photometry suggests that NGC 3934 is the product of a major merger.
15 pages, 12 figures, 5 tables; accepted for publication in A&A
References in corpus (19)
- The Galaxy Evolution Explorer: A Space Ultraviolet Survey Mission
- UV Star Formation Rates in the Local Universe
- The GALEX Ultraviolet Atlas of Nearby Galaxies
- Star formation rate indicators in the Sloan Digital Sky Survey
- The On-Orbit Performance of the Galaxy Evolution Explorer
- GALEX UV Color-Magnitude Relations and Evidence for Recent Star Formation in Early-type Galaxies
- Ram pressure stripping of halo gas in disk galaxies: Implications on galactic star formation in different environments
- Weak homology of elliptical galaxies
- Formation of polar ring galaxies
- Milky Way vs Andromeda: a tale of two disks
- Nearby early-type galaxies with ionized gas. The UV emission from GALEX observations
- Infrared Properties of Close Pairs of Galaxies
- Kinematics, Substructure and Luminosity-weighted Dynamics of Six Nearby Galaxy Groups
- GALEX UV properties of the polar ring galaxy MCG-05-07-001 and the shell galaxies NGC 1210 and NGC 5329
- The rotating molecular core and precessing outflow of the young stellar object Barnard 1c
- Photometric evolution of dusty starburst mergers:On the nature of ultra-luminous infrared galaxies
- Galaxy Evolution in Local Group Analogs. I. A GALEX study of nearby groups
- A neutral hydrogen survey of polar ring galaxies IV. Parkes observations
- Revisiting the formation History of the minor-axis dust lane galaxy NGC1947
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- Galaxy evolution in nearby groups. II. Galaxy evolution in nearby loose groups. II. Photometric and kinematic characterization of USGC U268 and USGC U376 group members in the Leo cloud
- Hot gas in groups: NGC 5328 and the intriguing case of NGC 4756 with XMM-Newton
- The molecular gas content of shell galaxies
- Investigating early-type galaxy evolution with a multi-wavelength approach. III. Insights from SPH simulations with chemo-photometric implementation
- Insights into the evolution of five isolated galaxies