2015A&A...577A..14M


Query : 2015A&A...577A..14M

2015A&A...577A..14M - Astronomy and Astrophysics, volume 577A, 14-14 (2015/5-1)

Mass-metallicity relation of zCOSMOS galaxies at z ≃ 0.7, its dependence on star formation rate, and the existence of massive low-metallicity galaxies.

MAIER C., ZIEGLER B.L., LILLY S.J., CONTINI T., PEREZ-MONTERO E., LAMAREILLE F., BOLZONELLA M. and LE FLOC'H E.

Abstract (from CDS):

The knowledge of the number and physical nature of low-metallicity massive galaxies is crucial for determining and interpreting the mass-metallicity relation (MZR). Using VLT-ISAAC near-infrared (NIR) spectroscopy of 39 zCOSMOS 0.5<z<0.9 galaxies, we have measured Hα and [NII]λ6584 emission line fluxes for galaxies with [OII]λ3727, Hβ, and [OIII]λ5007 available from VIMOS optical spectroscopy. The NIR spectroscopy enables us to break the degeneracy of the R23 method to unambiguously derive O/H gas metallicities and star formation rates (SFRs) from extinction-corrected Hα fluxes. We used the position in the D4000 vs. [OIII]λ5007/Hβ diagram of galaxies with reliable O/Hs from NIR spectroscopy as a benchmark. This enabled us to break the lower or upper branch R23 degeneracy of additional 900 zCOSMOS galaxies at 0.5<z<0.9, which do not have measurements of Hα and [NII]λ6584. Additionally, the Hα-based SFR measurements were used to find the best SFR calibration based on [OII]λ3727 for the 0.5<z<0.9 zCOSMOS galaxies without Hα measurements. With a larger zCOSMOS sample of star-forming galaxies at z≃0.7 with reliable O/H and SFR measurements, we studied the MZR at z≃0.7 and its dependence on (specific) SFR. We find a fraction of 19% of lower mass 9.5<log(M/M)<10.3 zCOSMOS galaxies that shows a larger evolution of the MZR relation than is found in higher mass galaxies; they are more metal poor at a given mass by a factor of 2-3 than SDSS. This indicates that the low-mass MZR slope steepens at z≃0.7 compared to local galaxies. Many of these galaxies with lower metallicity would be missed by studies that assume upper branch R23 solution for all galaxies. The existence of these metal-poor galaxies at z≃0.7 can be interpreted as the chemical version of galaxy downsizing. Moreover, the sample of zCOSMOS galaxies shows direct evidence that the SFR influences the MZR at these redshifts. The measured metallicities for the zCOSMOS sample broadly agree with the values expected for a non-evolving fundamental metallicity relation. This comparison also reveals that galaxies with lower metallicities and typically higher (specific) SFRs, such as found in our zCOSMOS sample at z≃0.7, agree with the predictions of a non-evolving Z(M,SFR).

Abstract Copyright:

Journal keyword(s): galaxies: evolution - galaxies: high-redshift - galaxies: star formation

CDS comments: 13 zCOSMOS objects listed in Table 1 are not in Simbad because no coordinates are provided.

Simbad objects: 27

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Number of rows : 27
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2023
#notes
1 [BMM2014] 1558515 G 09 57 52.760 +02 28 05.45 22.041 21.945 21.422 21.063 20.793 ~ 9 0
2 [BMM2014] 1084664 G 09 58 30.971 +02 11 31.61 24.25 23.91 23.26 22.72 22.094 ~ 11 0
3 [BMM2014] 1090105 G 09 58 47.033 +02 09 26.56 23.335 22.92 22.06 21.466 20.948 ~ 8 0
4 [BMM2014] 858385 G 09 58 51.621 +02 00 20.55 22.429 22.45 22.04 21.822 21.642 ~ 9 0
5 [BMM2014] 1055453 G 09 58 56.528 +02 12 55.16 21.914 21.746 21.305 20.945 20.601 ~ 11 0
6 [BMM2014] 791852 G 09 59 37.910 +02 07 18.74 23.325 23.09 22.48 22.001 21.301 ~ 6 0
7 CANDELS COSMOS F160W J100024.33+021224.7 G 10 00 24.335 +02 12 24.78 22.879 22.80 22.35 21.971 21.607 ~ 12 0
8 COSMOS 3050309 G 10 00 24.719 +02 50 39.00         21.13 ~ 5 0
9 NAME COSMOS Field reg 10 00 28.60 +02 12 21.0           ~ 2724 0
10 [BMM2014] 327678 G 10 00 30.037 +01 46 58.18 22.624 22.46 21.82 21.433 21.034 ~ 11 0
11 [MMS2013] 132792 G 10 00 34.512 +02 21 27.80         21.94 ~ 6 0
12 [BMM2014] 784013 G 10 00 34.629 +01 59 54.94 23.358 23.14 22.63 22.12 21.623 ~ 8 0
13 [MMS2013] 120493 G 10 00 50.790 +02 12 32.70 23.803 23.65 23.13 22.64 22.187 ~ 7 0
14 COSMOS 911012 G 10 00 51.694 +01 49 56.04 22.616 22.42 21.82 21.360 21.039 ~ 11 0
15 SDSS J100052.41+014833.0 G 10 00 52.413 +01 48 33.01 22.960 22.57 21.93 21.185 20.636 ~ 15 0
16 COSMOS 873584 EmG 10 00 58.096 +01 49 35.82 22.791 22.77 22.43 22.10 21.641 ~ 10 0
17 [BMM2014] 751767 EmG 10 01 03.519 +02 03 00.96 22.705 22.62 22.36 22.29 21.918 ~ 9 0
18 [BMM2014] 538211 G 10 01 04.482 +01 50 01.25 22.887 22.74 22.35 22.045 21.583 ~ 7 0
19 COSMOS2015 827881 G 10 01 17.271 +02 33 08.71 21.807 21.669 21.146 20.734 20.177 ~ 18 0
20 COSMOS 873518 EmG 10 01 18.882 +01 49 36.67 23.246 23.22 22.92 22.70 22.38 ~ 10 0
21 COSMOS 861016 EmG 10 01 19.446 +01 52 47.07 22.460 22.50 22.30 22.14 21.951 ~ 14 0
22 [BMM2014] 1654688 EmG 10 01 23.361 +02 40 36.12 22.466 22.35 21.766 21.584 21.256 ~ 7 0
23 [BMM2014] 984194 G 10 01 29.293 +02 11 16.22 22.497 22.34 21.794 21.404 21.034 ~ 9 0
24 [BMM2014] 301408 G 10 01 29.755 +01 47 26.43 23.436 23.21 22.77 22.34 21.788 ~ 6 0
25 [BMM2014] 949465 G 10 01 49.230 +02 15 03.95         21.76 ~ 6 0
26 [BMM2014] 516512 EmG 10 02 00.128 +01 48 40.68 22.846 22.82 22.62 22.43 22.078 ~ 7 0
27 COSMOS 464389 G 10 02 03.900 +01 41 04.27   22.974 22.863   22.05 ~ 5 0

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2023.03.29-12:43:48

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