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首页> 外文期刊>The Astrophysical journal >The Regulation Of Cooling And Star Formation In Luminous Galaxiesby Active Galactic Nucleus Feedback And The Cooling-time/entropy threshold For The Onset Of Star Formation
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The Regulation Of Cooling And Star Formation In Luminous Galaxiesby Active Galactic Nucleus Feedback And The Cooling-time/entropy threshold For The Onset Of Star Formation

机译:主动银河核反馈对发光星系冷却和恒星形成的调节以及恒星形成的冷却时间/熵阈值

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摘要

Using broadband optical imaging and Chandra X-ray data for a sample of 46 cluster central dominant galaxies (CDGs), we investigate the connection between star formation, the intracluster medium (ICM), and the central active galactic nucleus (AGN). We report the discovery of a remarkably sharp threshold for the onset of star formation that occurs when the central cooling time of the hot atmosphere falls below ~5 × 10~8 yr, or equivalently when the central entropy falls below ~30 keV cm~2. In addition to this criterion, star formation in cooling flows also appears to require that the X-ray and galaxy centroids lie within ~20 kpc of each other and that the jet (cavity) power is smaller than the X-ray cooling luminosity. These three criteria, together with the high ratio of cooling time to AGN outburst (cavity) age across our sample, directly link the presence of star formation and AGN activity in CDGs to cooling instabilities in the intracluster plasma. Our results provide compelling evidence that AGN feedback into the hot ICM is largely responsible for regulating cooling and star formation in the cores of clusters, leading to the significant growth of supermassive black holes in CDGs at late times.
机译:使用宽带光学成像和钱德拉X射线数据获取46个簇中央优势星系(CDG)的样本,我们研究了恒星形成,簇内介质(ICM)和中央活跃银河核(AGN)之间的联系。我们报告发现,当热大气的中央冷却时间降至〜5×10〜8 yr以下时,或等效地,当中心熵降至〜30 keV cm〜2以下时,就会出现恒星形成的起始阈值非常明显的发现。 。除此标准外,冷却流中的恒星形成似乎还要求X射线和星系质心彼此之间相差约20 kpc,并且射流(腔)的功率小于X射线冷却的光度。这三个标准,加上我们样品中冷却时间与AGN爆发(腔)年龄的高比率,直接将CDG中恒星形成和AGN活性的存在与簇内血浆的冷却不稳定性联系在一起。我们的结果提供了令人信服的证据,即AGN反馈到热ICM的过程主要负责调节星团核心中的冷却和恒星形成,从而导致后期CDG中超大质量黑洞的显着增长。

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