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首页> 外文期刊>The Astrophysical journal >THE MASS-METALLICITY AND FUNDAMENTAL METALLICITY RELATIONS AT z 2 USING VERY LARGE TELESCOPE* AND SUBARU ** NEAR-INFRARED SPECTROSCOPY OF zCOSMOS GALAXIES
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THE MASS-METALLICITY AND FUNDAMENTAL METALLICITY RELATIONS AT z 2 USING VERY LARGE TELESCOPE* AND SUBARU ** NEAR-INFRARED SPECTROSCOPY OF zCOSMOS GALAXIES

机译:使用zCOSMOS星系的非常大的望远镜*和SUBARU **近红外光谱在z> 2时的质量和基本金属关系

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In the local universe, there is good evidence that, at a given stellar mass M, the gas-phase metallicity Z is anti-correlated with the star formation rate (SFR) of the galaxies. It has also been claimed that the resulting Z(M, SFR) relation is invariant with redshift—the so-called "fundamental metallicity relation" (FMR). Given a number of difficulties in determining metallicities, especially at higher redshifts, the form of the Z(M, SFR) relation and whether it is really independent of redshift is still very controversial. To explore this issue at z 2, we used VLT-SINFONI and Subaru-MOIRCS near-infrared spectroscopy of 20 zCOSMOS-deep galaxies at 2.1 z 2.5 to measure the strengths of up to five emission lines: [O II] λ3727, Hβ, [O III] λ5007, Hα, and [N II] λ6584. This near-infrared spectroscopy enables us to derive O/H metallicities, and also SFRs from extinction corrected Hα measurements. We find that the mass-metallicity relation (MZR) of these star-forming galaxies at z ≈ 2.3 is lower than the local Sloan Digital Sky Survey (SDSS) MZR by a factor of three to five, a larger change than found by Erb et al. using [N II]/Hα-based metallicities from stacked spectra. We discuss how the different selections of the samples and metallicity calibrations used may be responsible for this discrepancy. The galaxies show direct evidence that the SFR is still a second parameter in the MZR at these redshifts. However, determining whether the Z(M, SFR) relation is invariant with epoch depends on the choice of extrapolation used from local samples, because z 2 galaxies of a given mass have much higher SFRs than the local SDSS galaxies. We find that the zCOSMOS galaxies are consistent with a non-evolving FMR if we use the physically motivated formulation of the Z(M, SFR) relation from Lilly et al., but not if we use the empirical formulation of Mannucci et al.
机译:在当地宇宙中,有充分的证据表明,在给定的恒星质量M下,气相金属度Z与星系的恒星形成率(SFR)反相关。也有人声称,所得的Z(M,SFR)关系随红移而不变-所谓的“基本金属性关系”(FMR)。考虑到确定金属性的许多困难,尤其是在较高的红移下,Z(M,SFR)关系的形式以及它是否真正独立于红移仍然是非常有争议的。为了在z> 2处探索此问题,我们使用VLT-SINFONI和Subaru-MOIRCS近红外光谱法对20个zCOSMOS深度为2.1 2星系的SFR比本地SDSS星系高得多。我们发现,如果我们使用Lilly等人的Z(M,SFR)关系的物理公式,则zCOSMOS星系与不演化的FMR相一致,但如果使用Mannucci等人的经验公式,则zCOSMOS星系与非演化FMR相一致。

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