2010A&A...522A...7A


Query : 2010A&A...522A...7A

2010A&A...522A...7A - Astronomy and Astrophysics, volume 522, A7-7 (2010/11-1)

PMAS optical integral field spectroscopy of luminous infrared galaxies. II. Spatially resolved stellar populations and excitation conditions.

ALONSO-HERRERO A., GARCIA-MARIN M., RODRIGUEZ ZAURIN J., MONREAL-IBERO A., COLINA L. and ARRIBAS S.

Abstract (from CDS):

The general properties (e.g., activity class, star formation rates, metallicities, extinctions, average ages, etc.) of luminous (LIRGs) and ultraluminous infrared galaxies (ULIRGs) in the local universe are well known because large samples of these objects have been the subject of numerous spectroscopic works over the past three decades. There are, however, relatively few studies of the spatially-resolved spectroscopic properties of large samples of LIRGs and ULIRGs using integral field spectroscopy (IFS). We are carrying out an IFS survey of local (z<0.26) samples of LIRGs and ULIRGs to characterize their two-dimensional spectroscopic properties. The main goal of this paper is to study the spatially resolved properties of the stellar populations and the excitation conditions in a sample of LIRGs. We analyze optical (3800-7200Å) IFS data taken with the Potsdam Multi-Aperture Spectrophotometer (PMAS) of the central few kiloparsecs of eleven LIRGs. To study these stellar populations, we fit the optical stellar continuum and the hydrogen recombination lines of selected regions in the galaxies. We analyzed the excitation conditions of the gas using the spatially resolved properties of the brightest optical emission lines. We complemented the PMAS observations with existing HST/NICMOS near-infrared continuum and Paα imaging. The optical continua of selected regions in our LIRGs are well fitted with a combination of an evolved (∼0.7-10Gyr) stellar population with an ionizing stellar population (1-20Myr). The latter population is more obscured than the evolved population, and has visual extinctions in good agreement with those obtained from the Balmer decrement. Except for NGC 7771, we find no clear that there is an important contribution to the optical light from an intermediate-aged stellar population (∼100-500Myr). Even after correcting for the presence of stellar absorption, a large number of spaxels with low observed equivalent widths of Hα in emission still show enhanced [NII]λ6584/Hα and [SII]λλ6717, 6731/Hα ratios. These ratios are likely to be produced by a combination of photoionization in HII regions and diffuse emission. These regions of enhanced line ratios are generally coincident with low surface-brightness HII regions and diffuse emission detected in the Hα and Paα images. We used the PMAS spatially resolved line ratios and the NICMOS Paα photometry of HII regions to derive the fraction of diffuse emission in LIRGs. We find that this fraction varies from galaxy to galaxy, and it is generally less than 60%, as found in other starburst galaxies.

Abstract Copyright:

Journal keyword(s): galaxies: evolution - galaxies: nuclei - galaxies: star formation - galaxies: structure - infrared: galaxies

Simbad objects: 14

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Number of rows : 14
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 NGC 23 AG? 00 09 53.411 +25 55 25.46   12.5       ~ 313 3
2 MCG+12-02-001 AG? 00 54 03.943 +73 05 05.23   16       ~ 109 1
3 UGC 1845 GiG 02 24 07.9838118384 +47 58 10.747047684   15.7       ~ 85 1
4 NGC 2388 GiG 07 28 53.4535009080 +33 49 08.554343196   14.7       ~ 135 2
5 MCG+02-20-003 GiG 07 35 43.416 +11 42 35.29   15.0       ~ 73 0
6 NGC 3690 IG 11 28 31.0 +58 33 41   13.19 12.86     ~ 978 4
7 IC 860 LIN 13 15 03.51 +24 37 07.8   14.8       ~ 217 0
8 M 51 Sy2 13 29 52.698 +47 11 42.93   9.26 8.36 8.40   ~ 4330 4
9 NGC 5936 H2G 15 30 00.846 +12 59 21.55   13.0       ~ 167 1
10 NGC 6701 AG? 18 43 12.429 +60 39 12.13   12.9       ~ 133 1
11 NGC 7469 Sy1 23 03 15.6 +08 52 26 12.60 13.00 12.34     ~ 2095 3
12 NGC 7591 SyG 23 18 16.2727927344 +06 35 09.108933504   13.8       ~ 269 0
13 NGC 7770 GiG 23 51 22.610 +20 05 48.56   14.5       ~ 101 1
14 NGC 7771 GiG 23 51 24.880 +20 06 42.57 13.42 13.08 12.25     ~ 338 4

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