论文标题

SDSS-IV漫画:星系相互作用如何影响活跃的银河核

SDSS-IV MaNGA: How Galaxy Interactions Influence Active Galactic Nuclei

论文作者

Steffen, Joshua L., Fu, Hai, Brownstein, Joel R., Comerford, J. M., Cruz-González, I., Dai, Y. Sophia, Drory, Niv, Gross, Arran C., Negrete, C. Alenka, Yan, Renbin

论文摘要

我们介绍了星系对和分离星系之间活性银河核(AGN)的比较研究,并最终数据释放了漫画整合场光谱调查。我们在调查的足迹中构建了391个运动学银河系对的样本,并使用调查光谱选择AGN。我们使用AGN样品的共同体积密度来量化潮汐相互作用对核积聚的影响。我们的假设是,这对样品包含不仅由随机积聚而触发的AGN,而且还由潮汐引起的积聚和相关积聚引起。随着由控制样品固定的随机触发的AGN水平,我们对潮汐诱导的积聚和相关积聚的强度进行了建模,这与投影分离(RP)的函数(RP)的函数,并将模型期望与观察到的双重AGN和Offset AGN的体积密度密度(一对单个AGN)进行比较。在RP 〜10 kpc时,我们发现潮汐相互作用诱导的AGN比随机加油高约30%,并且由于相关性而导致约12%的偏移AGN成为双AGN。这两种效应的强度随RP的增加而降低。我们还发现,星系对中AGN的OIII亮度与孤立星系中的OIII亮度一致,这很可能是因为随机喂养的AGN即使在近距对之间则占主导地位。我们的结果表明,尽管我们可以从统计上检测到潮汐诱导的效应,但在相互作用的星系中,分离潮汐诱导的AGN和随机触发的AGN是一项挑战。

We present a comparative study of active galactic nuclei (AGN) between galaxy pairs and isolated galaxies with the final data release of the MaNGA integral field spectroscopic survey. We build a sample of 391 kinematic galaxy pairs within the footprint of the survey and select AGN using the survey's spectra. We use the comoving volume densities of the AGN samples to quantify the effects that tidal interactions have on the triggering of nuclear accretion. Our hypothesis is that the pair sample contains AGN that are triggered by not only stochastic accretion but also tidally induced accretion and correlated accretion. With the level of stochastically triggered AGN fixed by the control sample, we model the strength of tidally induced accretion and correlated accretion as a function of projected separation (rp) and compare the model expectations with the observed volume densities of dual AGN and offset AGN (single AGN in a pair). At rp ~ 10 kpc, we find that tidal interactions induce ~30% more AGN than stochastic fueling and cause ~12% of the offset AGN to become dual AGN because of correlations. The strength of both these effects decreases with increasing rp. We also find that the OIII luminosities of the AGN in galaxy pairs are consistent with those found in isolated galaxies, likely because stochastically fed AGN dominate even among close pairs. Our results illustrates that while we can detect tidally induced effects statistically, it is challenging to separate tidally induced AGN and stochastically triggered AGN in interacting galaxies.

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