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Modeling ALMA Observations of the Warped Molecular Gas Disk in the Red Nugget Relic Galaxy NGC 384

ASTROPHYSICAL JOURNAL(2024)

NASA | Univ Calif Irvine | Univ Texas Austin | Univ Michigan | State Univ New Jersey | Peking Univ

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Abstract
We present 0.'' 22 resolution CO(2-1) observations of the circumnuclear gas disk in the local compact galaxy NGC 384 with the Atacama Large Millimeter/submillimeter Array (ALMA). While the majority of the disk displays regular rotation with projected velocities rising to 370 km s-1, the inner similar to 0.'' 5 exhibits a kinematic twist. We develop warped disk gas-dynamical models to account for this twist, fit those models to the ALMA data cube, and find a stellar mass-to-light ratio in the H band of M/L H = 1.34 +/- 0.01 [1 sigma statistical] +/- 0.02 [systematic] M circle dot/L circle dot and a supermassive black hole (BH) mass (M BH) of M BH =(7.26-0.48+0.43[1 sigma statistical]-1.00+0.55[systematic])x108M circle dot . In contrast to most previous dynamical M BH measurements in local compact galaxies, which typically found over-massive BHs compared to the local BH mass-bulge luminosity and BH mass-bulge mass relations, NGC 384 lies within the scatter of those scaling relations. NGC 384 and other local compact galaxies are likely relics of z similar to 2 red nuggets, and over-massive BHs in these relics indicate BH growth may conclude before the host galaxy stars have finished assembly. Our NGC 384 results may challenge this evolutionary picture, suggesting there may be increased scatter in the scaling relations than previously thought. However, this scatter could be inflated by systematic differences between stellar- and gas-dynamical measurement methods, motivating direct comparisons between the methods for NGC 384 and the other compact galaxies in the sample.
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Key words
Supermassive black holes,Molecular gas,Millimeter astronomy,Submillimeter astronomy,Galaxy kinematics,Early-type galaxies
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要点】:本文利用ALMA观测数据研究了NGC 384星系中分子气体盘的扭曲现象,通过建立扭曲盘气体动力学模型,发现该星系的黑洞质量与恒星质量比符合局部黑洞质量-星系核球光度关系,挑战了现有关于黑洞增长与星系组装关系的理解。

方法】:作者开发并应用了扭曲盘气体动力学模型来拟合ALMA观测数据,以解释星系盘中观测到的速度扭曲现象。

实验】:使用ALMA阵列对NGC 384星系的CO(2-1)分子线进行观测,获得了0.'' 22分辨率的数据,通过模型拟合,得出恒星质量-光度和黑洞质量,数据集为ALMA观测数据。