论文标题

极端水母星系在巨大簇中增强的恒星形成活性和RAM压力剥离的作用

Enhanced Star Formation Activity of Extreme Jellyfish Galaxies in Massive Clusters and the Role of Ram Pressure Stripping

论文作者

Lee, Jeong Hwan, Lee, Myung Gyoon, Mun, Jae Yeon, Cho, Brian S., Kang, Jisu

论文摘要

水母星系是研究RAM压力剥离(RPS)对群集环境中恒星形成的短期影响的绝佳工具。人们认为,水母星系的星形形成活性可能取决于宿主簇的特性,但以前的研究尚未发现明显的相关性。在这项研究中,我们估计了大量簇中的五个水母星系的基于\ hA的恒星形成率($σ_{v,{\ rm cl}}} \ gtrsim1000〜 {\ rm km km km〜s^s^{ - 1}} $ s $ z \ sim0.3-3--0.4 $ gm/ifemientione ifue compentery in fempegue将我们的结果与文献中的结果相结合,我们发现水母星系的恒星形成活性与它们的宿主群集速度分散剂是群集质量和动力状态的代理。我们将水母星系样品分为两组,使用形态学类别具有强和弱的RPS特征。在相位图中,具有强RPS特征的水母星系比具有较弱的RPS特征的SFR更高和更强的中央浓度。我们估计它们相对于星形组主序列(starburstiness; $ r _ {\ rm sb} = {\ rm sfr/sfr_ ​​{ms}}}(z)$)的过量估计,并使用周围升级内介质(ICM)的密度使用cluster速度速度速度质量质量。结果,具有强RPS特征的水母星系的星状爆炸显然表现出与群集速度分散,ICM密度和RAM压力强度的正相关。这表明水母星系的RPS和恒星形成活性之间的关系取决于宿主簇的性质和RAM压力的强度。

Jellyfish galaxies are an excellent tool to investigate the short-term effects of ram pressure stripping (RPS) on star formation in cluster environments. It has been thought that the star formation activity of jellyfish galaxies may depend on the host cluster properties, but previous studies have not yet found a clear correlation. In this study, we estimate the \Ha-based star formation rates (SFRs) of five jellyfish galaxies in massive clusters ($σ_{v, {\rm cl}}\gtrsim1000~{\rm km~s^{-1}}$) at $z\sim0.3-0.4$ using Gemini GMOS/IFU observations to explore the relationship. Combining our results with those in the literature, we find that the star formation activity of jellyfish galaxies shows a positive correlation with their host cluster velocity dispersion as a proxy of cluster mass and dynamical states. We divide the jellyfish galaxy sample into two groups with strong and weak RPS signatures using a morphological class. In the phase-space diagram, the jellyfish galaxies with strong RPS features show a higher SFR and a stronger central concentration than those with weak RPS features. We estimate their SFR excess relative to the star formation main sequence (starburstiness; $R_{\rm SB}={\rm SFR/SFR_{MS}}(z)$) and the density of the surrounding intracluster medium (ICM) using scaling relations with the cluster velocity dispersion. As a result, the starburstiness of jellyfish galaxies with strong RPS signatures clearly exhibits positive correlations with cluster velocity dispersion, ICM density, and strength of ram pressure. This shows that the relation between RPS and star formation activity of jellyfish galaxies depends on the host cluster properties and strength of ram pressure.

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