2015MNRAS.451..433H


Query : 2015MNRAS.451..433H

2015MNRAS.451..433H - Mon. Not. R. Astron. Soc., 451, 433-454 (2015/July-3)

Testing the modern merger hypothesis via the assembly of massive blue elliptical galaxies in the local Universe.

HAINES T., McINTOSH D.H., SANCHEZ S.F., TREMONTI C. and RUDNICK G.

Abstract (from CDS):

The modern merger hypothesis offers a method of forming a new elliptical galaxy through merging two equal-mass, gas-rich disc galaxies fuelling a nuclear starburst followed by efficient quenching and dynamical stabilization. A key prediction of this scenario is a central concentration of young stars during the brief phase of morphological transformation from highly disturbed remnant to new elliptical galaxy. To test this aspect of the merger hypothesis, we use integral field spectroscopy to track the stellar Balmer absorption and 4000-Å break strength indices as a function of galactic radius for 12 massive (M* ≥ 1010M), nearby (z ≤ 0.03), visually-selected plausible new ellipticals with blue-cloud optical colours and varying degrees of morphological peculiarities. We find that these index values and their radial dependence correlate with specific morphological features such that the most disturbed galaxies have the smallest 4000-Å break strengths and the largest Balmer absorption values. Overall, two-thirds of our sample are inconsistent with the predictions of the modern merger hypothesis. Of these eight, half exhibit signatures consistent with recent minor merger interactions. The other half have star formation histories similar to local, quiescent early-type galaxies. Of the remaining four galaxies, three have the strong morphological disturbances and star-forming optical colours consistent with being remnants of recent, gas-rich major mergers, but exhibit a weak, central burst consistent with forming ∼ 5 percent of their stars. The final galaxy possesses spectroscopic signatures of a strong, centrally concentrated starburst and quiescent core optical colours indicative of recent quenching (i.e. a post-starburst signature) as prescribed by the modern merger hypothesis.

Abstract Copyright: © 2015 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society (2015)

Journal keyword(s): galaxies: evolution - galaxies: peculiar - galaxies: star formation

Simbad objects: 12

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Number of rows : 12
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 Mrk 366 bCG 02 11 33.5509130952 +13 55 01.623736812   15.0       ~ 48 0
2 NGC 1149 LIN 02 57 23.8672537176 -00 18 33.906527496   15.5       ~ 28 0
3 NVSS J080327+250605 rG 08 03 28.0664075088 +25 06 09.524485260   15.2       ~ 49 0
4 MCG+05-20-020 AGN 08 29 30.0002518128 +31 40 31.612705860   14.9       ~ 24 0
5 UGC 5026 Sy2 09 26 39.7926608664 +45 50 49.637355720   14.20       ~ 50 0
6 IC 669 GiG 11 07 16.5684830952 +06 18 08.924884020   14.3       ~ 25 0
7 UGC 6227 GiG 11 11 27.3658205016 +47 02 07.855452924   14.3       ~ 24 0
8 NGC 3921 AG? 11 51 06.8803989360 +55 04 43.414457484   13.4 12.64     ~ 246 0
9 Mrk 210 rG 12 26 56.748 +48 16 37.05   14.7       ~ 26 0
10 2MASX J12382172+4212196 LIN 12 38 21.7823762472 +42 12 19.735637580   15.6       ~ 11 0
11 NGC 4985 Sy2 13 08 12.0966830328 +41 40 34.818317544   15.1       ~ 22 0
12 NGC 6314 LIN 17 12 38.6880420672 +23 16 12.229407012 16.04 15.56 14.62 14.02 13.33 ~ 102 0

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