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首页> 外文期刊>The Astrophysical journal >PHYSICAL PROPERTIES OF SPECTROSCOPICALLY CONFIRMED GALAXIES AT z?≥?6. III. STELLAR POPULATIONS FROM SED MODELING WITH SECURE Lyα EMISSION AND REDSHIFTS*
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PHYSICAL PROPERTIES OF SPECTROSCOPICALLY CONFIRMED GALAXIES AT z?≥?6. III. STELLAR POPULATIONS FROM SED MODELING WITH SECURE Lyα EMISSION AND REDSHIFTS*

机译:在z≥≥6的光谱确认星系的物理性质。三,安全的Lyα发射和重新偏移的SED建模中的主要人口*

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We present a study of stellar populations in a sample of spectroscopically confirmed Lyman-break galaxies (LBGs) and Lyα emitters (LAEs) at These galaxies have deep images from Subaru, the Hubble Space Telescope, and Spitzer/IRAC. We focus on 27 galaxies with IRAC detections, and characterize their stellar populations based on the multi-band data and secure redshifts. By estimating nebular emission from the observed Lyα flux, we break the strong model degeneracy between young galaxies with prominent nebular emission and older galaxies with strong Balmer breaks. The results show that our galaxies cover a wide range of ages from several to a few hundred million years (Myr), and stellar masses from ~108 to ~10 These galaxies can be roughly divided into two subsamples: an "old" subsample consisting of galaxies older than 100 Myr, with stellar masses higher than and a "young" subsample consisting of galaxies younger than ~30 Myr, with masses ranging between ~108 and ~ Both subsamples display a correlation between stellar mass and star formation rate (SFR), but with very different normalizations. The average specific SFR (sSFR) of the "old" subsample is 3–4 Gyr?1, consistent with previous studies of "normal" star-forming galaxies at The average sSFR of the "young" subsample is an order of magnitude higher, likely due to starburst activity. Our results also indicate little dust extinction in the majority of the galaxies, as already suggested by their steep rest-frame UV slopes. Finally, LAEs and LBGs with strong Lyα emission are indistinguishable in terms of age, stellar mass, and SFR.
机译:我们在光谱确认的莱曼破裂星系(LBG)和Lyα发射体(LAE)的样本中对恒星种群进行了研究。这些星系具有来自斯巴鲁,哈勃太空望远镜和Spitzer / IRAC的深层图像。我们将重点放在具有IRAC检测功能的27个星系上,并基于多波段数据和安全红移来表征它们的恒星种群。通过从观测到的Lyα通量估计星云发射,我们打破了星云发射明显的年轻星系和Balmer断裂强的老式星系之间的强模型退化。结果表明,我们的星系涵盖了从几岁到几亿年(Myr)的广泛年龄,星团的质量从〜108到〜10。这些星系可以大致分为两个子样本:“旧”子样本包括年龄大于100 Myr的星系,且恒星质量高于星系,并且“年轻”子样本由年龄小于〜30 Myr的星系组成,质量在〜108至〜之间。两个子样本均显示了恒星质量与恒星形成率(SFR)之间的相关性,但归一化却大不相同。 “旧”子样本的平均SFR(sSFR)为3-4 Gyr?1,这与之前对“正常”恒星形成星系的先前研究一致。“年轻”子样本的平均SSFR高一个数量级,可能是由于星爆活动。我们的结果还表明,大多数星系中几乎没有尘埃消亡,正如陡峭的静止镜架UV斜率所表明的那样。最后,具有强Lyα发射的LAE和LBG在年龄,恒星质量和SFR方面是无法区分的。
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