论文标题
MOSDEF调查:显着Z = 1.89合并的新视图
The MOSDEF Survey: A New View of a Remarkable z=1.89 Merger
论文作者
论文摘要
我们介绍了一项关于$ z = 1.89 $在商品-S领域进行的星系合并的详细研究。在这里,我们分析了来自Mosfire深层进化场(MOSDEF)调查的Keck/Mosfire光谱观测以及由3D-HST调查组装而成的多波长光度法。合并的数据集的建模是为了推断两个合并星系的过去恒星形成历史(SFHS)。发现它们是巨大的,带有log $ _ {10}(m _ {\ ast}/m _ {\ odot})> 11 $,并且质量比满足了典型的主要合并定义。此外,在延迟 - $τ$型号的背景下,商品-S 43114和商品S 43683具有相似的SFH和低星形成率(log $ _ {10} $(SFR(SFR(SED)/$ M _ {\ odot}/\ odot}/\ odot}/\ rm {yr rm {yr}^{yr}^{ - 1} $ <$ <$ <$ 1.0)最佳拟合模型SED显示了两个星系的升高的H $δ_{\ rm {a}} $值,表明它们的恒星光谱由A型恒星主导,而该星形的峰值达到了$ \ sim0.5-1 $ gyr ogo的峰值,并且最近已降低。此外,基于SED拟合,两个合并的星系都打开并关闭了几百个Myr中的星形形成,这表明它们的星形爆发可能会连接起来。将SFHS和H $δ_{\ rm {a}} $与最近的Galaxy合并模拟结合在一起,我们推断出这些星系最近已经完成了他们的第一个上述上述段落,并正在分开。最后,鉴于其出色的质量,商品-S 43114的相对较低的速度矩相对较低,这表明磁盘样结构。但是,在建模中包括银河系的几何形状并不能完全解决动力学和恒星质量之间的差异。需要未来的工作来解决质量的这种不一致。
We present a detailed study of a galaxy merger taking place at $z=1.89$ in the GOODS-S field. Here we analyze Keck/MOSFIRE spectroscopic observations from the MOSFIRE Deep Evolution Field (MOSDEF) survey along with multi-wavelength photometry assembled by the 3D-HST survey. The combined dataset is modeled to infer the past star-formation histories (SFHs) of both merging galaxies. They are found to be massive, with log$_{10}(M_{\ast}/M_{\odot}) > 11$, with a close mass ratio satisfying the typical major-merger definition. Additionally, in the context of delayed-$τ$ models, GOODS-S 43114 and GOODS-S 43683 have similar SFHs and low star-formation rates (log$_{10}$(SFR(SED)/$M_{\odot}/\rm{yr}^{-1}$) $<$ 1.0) compared to their past averages. The best-fit model SEDs show elevated H$δ_{\rm{A}}$ values for both galaxies, indicating that their stellar spectra are dominated by A-type stars, and that star formation peaked $\sim0.5-1$ Gyr ago and has recently declined. Additionally, based on SED fitting both merging galaxies turned on and shut off star formation within a few hundred Myr of each other, suggesting that their bursts of star formation may be linked. Combining the SFHs and H$δ_{\rm{A}}$ results with recent galaxy merger simulations, we infer that these galaxies have recently completed their first pericentric passage and are moving apart. Finally, the relatively low second velocity moment of GOODS-S 43114 given its stellar mass, suggests a disk-like structure. However, including the geometry of the galaxy in the modeling does not completely resolve the discrepancy between the dynamical and stellar masses. Future work is needed to resolve this inconsistency in mass.