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THE ASSEMBLY HISTORIES OF QUIESCENT GALAXIES SINCE z = 0.7 FROM ABSORPTION LINE SPECTROSCOPY

机译:自吸收线光谱以来z = 0.7以来的大量星系的装配历史

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We present results from modeling the optical spectra of a large sample of quiescent galaxies between 0.1 z 0.7 from the Sloan Digital Sky Survey (SDSS) and the AGN and Galaxy Evolution Survey (AGES). We examine how the stellar ages and abundance patterns of galaxies evolve over time as a function of stellar mass from 109.6-1011.8 M ☉. Galaxy spectra are stacked in bins of mass and redshift and modeled over a wavelength range from 4000 ? to 5500 ?. Full spectrum stellar population synthesis modeling provides estimates of the age and the abundances of the elements Fe, Mg, C, N, and Ca. We find negligible evolution in elemental abundances at fixed stellar mass over roughly 7?Gyr of cosmic time. In addition, the increase in stellar ages with time for massive galaxies is consistent with passive evolution since z = 0.7. Taken together, these results favor a scenario in which the inner ~0.3-3 R e of massive quiescent galaxies have been passively evolving over the last half of cosmic time. Interestingly, the derived stellar ages are considerably younger than the age of the universe at all epochs, consistent with an equivalent single-burst star formation epoch of z 1.5. These young stellar population ages coupled with the existence of massive quiescent galaxies at z 1 indicate the inhomogeneous nature of the z 0.7 quiescent population. The data also permit the addition of newly quenched galaxies at masses below ~1010.5 M ☉ at z 0.7. Additionally, we analyze very deep Keck DEIMOS spectra of the two brightest quiescent galaxies in a cluster at z = 0.83. There is tentative evidence that these galaxies are older than their counterparts in low-density environments. In the Appendix, we demonstrate that our full spectrum modeling technique allows for accurate and reliable modeling of galaxy spectra to low S/N (~20 ?–1) and/or low spectral resolution (R ~ 500).
机译:我们通过对Sloan数字天空调查(SDSS)和AGN和星系演化调查(AGES)的0.1 1的大量静态星系的存在表明z 0.7静态人口的不均匀性质。数据还允许在z <0.7时以小于〜1010.5 M☉的质量添加新淬灭的星系。此外,我们分析了z = 0.83时群集中两个最明亮的静态星系的非常深的Keck DEIMOS光谱。初步证据表明,这些星系比低密度环境中的星系更老。在附录中,我们证明了我们的全光谱建模技术可以对低S / N(〜20?-1)和/或低光谱分辨率(R〜500)的银河光谱进行准确可靠的建模。

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