绿谷中 z ∼ 0.7 的活动星系核

Charity Woodrum, Christina C. Williams, Marcia Rieke, Kevin N. Hainline, Raphael E. Hviding, Zhiyuan Ji, Robert Kennicutt and Christopher N. A. Willmer
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摘要

我们利用 MMT 和 Magellan 红外光谱仪对 z ∼ 0.7 的 29 个大质量星系( )样本进行了近红外光谱分析,并对大型早期星系天体物理学普查(LEGA-C)的光学光谱进行了分析。在这一红移下同时使用光学和近红外光谱仪,使我们能够测量全套的静光学强发射线,从而能够研究电离源和活动星系核(AGN)的静光学选择,以及测量基于尘埃校正 Hα 的恒星形成率(SFRs)。我们发现,29 个星系中有 11 个存在 AGN。我们利用光谱能量分布拟合代码 Prospector 来推断非参数恒星形成历史,并根据最近的特定 SFR 将星系分为恒星形成星系、绿谷星系和静止星系。我们探讨了AGN活动与恒星形成受抑制之间的联系,发现89%±15%的绿谷或绿谷以下星系都寄生有AGN,而只有15%±8%的绿谷以上星系寄生有AGN。我们构建了恒星形成主序(SFMS),发现AGN宿主星系低于SFMS 0.37 dex,而没有探测到AGN的星系与位于SFMS上的星系一致。不过,如果与自引导的质量匹配样本进行比较,我们的AGN宿主星系样本的SFR与LEGA-C的全部样本是一致的。基于这种质量匹配分析,我们不能排除恒星形成的抑制是由与AGN样本质量较高有关的其他过程驱动的。因此,我们无法将AGN活动的存在与恒星形成的淬灭联系起来。
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Active Galactic Nuclei in the Green Valley at z ∼ 0.7
We present near-infrared (NIR) spectroscopy using the MMT and Magellan infrared spectrograph for a sample of 29 massive galaxies ( ) at z ∼ 0.7 with optical spectroscopy from the Large Early Galaxy Astrophysics Census (LEGA-C) survey. Having both optical and NIR spectroscopy at this redshift allows us to measure the full suite of rest-optical strong emission lines, enabling the study of ionization sources and the rest-optical selection of active galactic nuclei (AGN), as well as the measurement of dust-corrected Hα-based star formation rates (SFRs). We find that 11 out of 29 galaxies host AGN. We infer the nonparametric star formation histories with the spectral energy distribution fitting code Prospector and classify galaxies as star-forming, green valley, or quiescent based on their most recent specific SFRs. We explore the connection between AGN activity and suppressed star formation, and find that 89% ± 15% of galaxies in the green valley or below host AGN, while only 15% ± 8% of galaxies above the green valley host AGN. We construct the star-forming main sequence (SFMS) and find that the AGN host galaxies are 0.37 dex below the SFMS, while galaxies without detectable AGN are consistent with being on the SFMS. However, when compared to a bootstrapped mass-matched sample, the SFRs of our sample of AGN host galaxies are consistent with the full LEGA-C sample. Based on this mass-matched analysis, we cannot rule out that this suppression of star formation is driven by other processes associated with the higher mass of the AGN sample. We therefore cannot link the presence of AGN activity to the quenching of star formation.
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