论文标题

MOSEL调查:使用运动学和Illustristng模拟跟踪2 <Z <4的大型星系的生长

MOSEL Survey: Tracking the Growth of Massive Galaxies at 2<z<4 using Kinematics and the IllustrisTNG Simulation

论文作者

Gupta, Anshu, Tran, Kim-Vy, Cohn, Jonathan, Alcorn, Leo Y., Yuan, Tiantian, Rodriguez-Gomez, Vicente, Harshan, Anishya, Forrest, Ben, Kewley, Lisa J., Glazebrook, Karl, Straatman, Caroline M., Kacprzak, Glenn G., Nanayakkara, Themiya, Labbé, Ivo, Papovich, Casey, Cowley, Michael

论文摘要

我们使用来自多对象光谱发射线(MOSEL)调查的K波段光谱数据来分析Z> 3处星系的运动学特性。我们的样本由3.0 <zspec <3.8的34个星系组成,在9.0 <log(m_star)<11.0之间。我们发现,与类似恒星质量的Z〜2相比,在Z> 3时具有log(M_star)> 10.2的星系具有56 +/- 21 km/s的集成速度分散。 Z> 3处的大型星系具有平坦或衰减的恒星形成历史(SFH),而Z〜2.0的类似恒星质量星系在过去的500个MYR中显示出较小的峰值。 Comparing with the IllustrisTNG cosmological simulation, we find that (i) the dynamical mass of massive galaxies in simulations (log(M_star) > 10.0) increases by ~0.1 dex at a fixed stellar mass between z=2.0-3.0, and (ii) dynamical mass growth is coupled with a rapid rise in the ex-situ stellar mass fraction (stars accreted from other galaxies) for massive galaxies at z < 3.5。我们推测,与z〜2.0相比,z〜2.0处的巨大星系的总恒星质量对巨大星系的总恒星质量增长的贡献正在推动较高的综合速度分散体和大型星系的SFH升高。

We use K-band spectroscopic data from the Multi-Object Spectroscopic Emission Line (MOSEL) survey to analyze the kinematic properties of galaxies at z>3. Our sample consists of 34 galaxies at 3.0<zspec<3.8 between 9.0<log(M_star)<11.0. We find that galaxies with log(M_star) > 10.2 at z > 3 have 56 +/- 21 km/s lower integrated velocity dispersion compared to galaxies at z ~ 2 of similar stellar mass. Massive galaxies at z > 3 have either a flat or declining star formation history (SFH), whereas similar stellar mass galaxies at z~2.0 exhibit a slight peak in the past 500 Myrs. Comparing with the IllustrisTNG cosmological simulation, we find that (i) the dynamical mass of massive galaxies in simulations (log(M_star) > 10.0) increases by ~0.1 dex at a fixed stellar mass between z=2.0-3.0, and (ii) dynamical mass growth is coupled with a rapid rise in the ex-situ stellar mass fraction (stars accreted from other galaxies) for massive galaxies at z < 3.5. We speculate that the rising contribution of ex-situ stellar mass to the total stellar mass growth of massive galaxies is driving the higher integrated velocity dispersion and rising SFHs of massive galaxies at z~2.0 compared to galaxies of similar stellar masses at z > 3.

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