2017MNRAS.470.1218P


Query : 2017MNRAS.470.1218P

2017MNRAS.470.1218P - Mon. Not. R. Astron. Soc., 470, 1218-1232 (2017/September-1)

Far-infrared metallicity diagnostics: application to local ultraluminous infrared galaxies.

PEREIRA-SANTAELLA M., RIGOPOULOU D., FARRAH D., LEBOUTEILLER V. and LI J.

Abstract (from CDS):

The abundance of metals in galaxies is a key parameter that permits to distinguish between different galaxy formation and evolution models. Most of the metallicity determinations are based on optical line ratios. However, the optical spectral range is subject to dust extinction and, for high-z objects (z > 3), some of the lines used in optical metallicity diagnostics are shifted to wavelengths not accessible to ground-based observatories. For this reason, we explore metallicity diagnostics using far-infrared (far-IR) line ratios which can provide a suitable alternative in such situations. To investigate these far-IR line ratios, we modelled the emission of a starburst with the photoionization code CLOUDY. The most sensitive far-IR ratios to measure metallicities are the [O III]52 µm and 88 µm to [N III]57 µm ratios. We show that this ratio produces robust metallicities in the presence of an active galactic nucleus and is insensitive to changes in the age of the ionizing stellar. Another metallicity-sensitive ratio is the [O III]88 µm/[N II]122 µm ratio, although it depends on the ionization parameter. We propose various mid- and far-IR line ratios to break this dependence. Finally, we apply these far-IR diagnostics to a sample of 19 local ultraluminous IR galaxies (ULIRGs) observed with Herschel and Spitzer. We find that the gas-phase metallicity in these local ULIRGs is in the range 0.7<Z_ gas_/ Z < 1.5, which corresponds to 8.5 <12 + log( O/ H) < 8.9. The inferred metallicities agree well with previous estimates for local ULIRGs and this confirms that they lie below the local mass-metallicity relation.

Abstract Copyright: © 2017 The Authors Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): galaxies: abundances - galaxies: ISM - infrared: galaxies - infrared: ISM - infrared: ISM

Status at CDS : Large table(s) will be appraised for possible ingestion in VizieR.

Simbad objects: 22

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Number of rows : 22
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 2MASX J00212652-0839261 LIN 00 21 26.5135306416 -08 39 25.967117268   18.37       ~ 114 1
2 6dFGS gJ004215.5-125604 H2G 00 42 15.54 -12 56 03.0   19.45       ~ 74 0
3 IRAS 01003-2238 Sy2 01 02 49.9920152640 -22 21 57.262136544   18.62 18.9 17.83   ~ 164 0
4 LEDA 89499 Sy2 06 02 54.066 -71 03 10.48   15.6       ~ 94 1
5 NAME IRAS F08572+3915 NW LIN 09 00 25.364 +39 03 54.23     16.66     ~ 419 1
6 LEDA 33083 LIN 10 59 18.128 +24 32 34.74   15.7       ~ 274 1
7 LEDA 125693 LIN 11 12 03.4 -02 54 23   17.45 17.40     ~ 101 1
8 LEDA 39024 LIN 12 13 46.107 +02 48 41.50           ~ 354 1
9 2MASX J13150638-5509225 Sy2 13 15 06.383 -55 09 22.60   17.3       ~ 147 0
10 LEDA 52270 Sy1 14 37 38.2867288488 -15 00 24.087592692   16.58 16.40     ~ 276 1
11 LEDA 90222 Sy1 15 48 56.8020209304 -04 59 33.598051584   16.4 16.40 16.85   ~ 97 0
12 LEDA 90237 LIN 16 11 40.4280459768 -01 47 06.566246232   16.6       ~ 82 0
13 LEDA 60189 LIN 17 23 21.943 -00 17 00.96   15.1       ~ 424 0
14 NAME Super Antennae Sy2 19 31 21.4272801984 -72 39 21.442847832   17.39 16.37 14.65   ~ 301 2
15 LEDA 90327 EmG 19 32 22.2962473608 -04 00 01.797249204   18.85   17.04   ~ 110 0
16 LEDA 90352 LIN 20 11 23.862 -02 59 50.33   17.80   16.41   ~ 68 0
17 [VV2000] J201329.8-414735 QSO 20 13 29.509 -41 47 35.48   17.0       ~ 129 2
18 ESO 286-19 LIN 20 58 26.8183783008 -42 38 59.411838156   14.79 14.79 14.20   ~ 291 0
19 ESO 148-2 Sy2 23 15 46.772 -59 03 15.94   14.94 14.73 13.95   ~ 265 1
20 LEDA 90424 LIN 23 26 03.6867143064 -69 10 18.422274828   16.6       ~ 50 0
21 LEDA 90425 H2G 23 28 06.0899186859 -53 58 30.679199450   17.19   16.10   ~ 38 0
22 LEDA 90429 SyG 23 39 01.274 +36 21 08.77   16.17       ~ 216 1

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