论文标题

群集环境消除了从内而外的低质量卫星星系的恒星形成

Cluster environment quenches the star formation of low-mass satellite galaxies from the inside-out

论文作者

Wang, Bitao

论文摘要

环境在星系的恒星形成历史中起着至关重要的作用。潮汐和流体动力学剥离,在簇环境中突出,可以去除星系的外围气体,而恒星形成可以从外部抑制。我们重新审视特定恒星形成率(SSFR)谱的径向梯度的环境依赖性。我们通过使用从SDSS纤维光谱测量的档案频谱D4000N和HDA探测径向梯度,以指示中央SSFR,并使总SSFR适合光谱能量分布。尽管空间分辨率很低,但SDSS数据的财富允许消除对恒星质量,SSFR和环境的依赖。我们发现,与在质量,SSFR和纤维覆盖率匹配的隔离星系相比,质量范围内9 <log m/m_solar <9.8的低质量卫星星系平均更高。这种环境效应对于恒星形成主序列以下的星系尤其强,并且对于大量群集核心的峰值,相位空间图揭示了内而外的淬火和轨道性质之间的明显联系。我们的结果表明,聚类环境中的潮汐和流体动力相互作用都抑制了主要从内而外的卫星形成。由于来自热气晕的低角度动量的积聚气体是补充中央气体储层的重要来源,我们讨论了簇中的气体剥离可能导致饥饿并在外部恒星形成盘受到显着影响时导致内外淬火。

Environment plays a critical role in the star formation history of galaxies. Tidal and hydrodynamical stripping, prominent in cluster environment, can remove the peripheral gas of galaxies and star formation may thus be environmentally suppressed from the outside-in. We revisit the environmental dependence of the radial gradient of specific star formation rate (sSFR) profile. We probe the radial gradient by using the archival spectral indices D4000n and HdA measured from SDSS fiber spectra, to indicate central sSFR, and the total sSFR from fitting the spectral energy distribution. Despite the low spatial resolution, the wealth of SDSS data allows to disentangle the dependences on stellar mass, sSFR, and environment. We find that low-mass satellite galaxies in the mass range 9 < log M/M_solar < 9.8 on average quench in more inside-out pattern compared to isolated galaxies matched in mass, sSFR, and fiber coverage. This environmental effect is particularly strong for galaxies below the star formation main sequence, and peaks for those in the core of massive clusters where the phase-space diagram reveals clear links between the inside-out quenching and orbital properties. Our results suggest that both tidal and hydrodynamical interactions in cluster environment suppress the star formation of satellites mainly from the inside-out. As accreted gas of low angular momentum from hot gas halos is an important source for replenishing central gas reservoir, we discuss how gas stripping in clusters may lead to starvation and cause inside-out quenching when the outer star-forming discs are not significantly affected.

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