论文标题

部分可观测时空混沌系统的无模型预测

Testing the Radio-Selection Method of Dual Active Galactic Nuclei in the Stripe 82 Field

论文作者

Gross, Arran C., Fu, Hai, Myers, Adam D., Djorgovski, Stanislav G., Steffen, Joshua L., Wrobel, Joan M.

论文摘要

我们使用来自SDSS Stripe 82场的35个射线银河系对样品测试了合并诱导的双活性银河核(DAGN)范式。使用KECK光谱法,我们确认21对具有一致的红移,构成运动学对;其余14对是视线预测。我们通过发射线比,等效宽度和超过星形构型预测输出的无线电功率对光谱特征进行分类。我们发现6个星系被归类为衬里,7个是AGN/Starburst复合材料。大多数衬里是退休的星系,而复合材料可能具有AGN贡献。所有运动学对表现出无线电功率超过10 $ \ times $比仅因星形式而预期的水平,这表明了无线电AGN的贡献。 We also analyze high-resolution (0.3") imaging at 6 GHz from the NSF's Karl G. Jansky Very Large Array for 17 of the kinematic pairs. We find 6 pairs (2 new, 4 previously known) host two separate radio cores, confirming their status as dAGNs. The remaining 11 pairs contain single AGNs, with most exhibiting prominent jets/lobes overlapping their companion. Our final census indicates a dagn占空比纯粹的随机加油的预测略高,尽管需要较大的样本(可能从Vlass中剔除)以充分解决DAGN分数。

We test the merger-induced dual active galactic nuclei (dAGN) paradigm using a sample of 35 radio galaxy pairs from the SDSS Stripe 82 field. Using Keck optical spectroscopy, we confirm 21 pairs have consistent redshifts, constituting kinematic pairs; the remaining 14 pairs are line-of-sight projections. We classify the optical spectral signatures via emission line ratios, equivalent widths, and excess of radio power above star-formation predicted outputs. We find 6 galaxies are classified as LINERs and 7 are AGN/starburst composites. Most of the LINERs are retired galaxies, while the composites likely have AGN contribution. All of the kinematic pairs exhibit radio power more than 10$\times$ above the level expected from just star-formation, suggestive of a radio AGN contribution. We also analyze high-resolution (0.3") imaging at 6 GHz from the NSF's Karl G. Jansky Very Large Array for 17 of the kinematic pairs. We find 6 pairs (2 new, 4 previously known) host two separate radio cores, confirming their status as dAGNs. The remaining 11 pairs contain single AGNs, with most exhibiting prominent jets/lobes overlapping their companion. Our final census indicates a dAGN duty cycle slightly higher than predictions of purely stochastic fueling, although a larger sample (potentially culled from VLASS) is needed to fully address the dAGN fraction. We conclude that while dAGNs in the Stripe 82 field are rare, the merger process plays some role in their triggering and it facilitates low to moderate levels of accretion.

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