z~6.2级的类星体-星系合并:通过两个大质量卫星星系的吸积实现主机的快速增长

R. Decarli, F. Loiacono, Emanuele Paolo Farina, M. Dotti, Alessandro Lupi, A. Romain Meyer, M. Mignoli, A. Pensabene, A. Michael Strauss, B. Venemans, Jinyi Yang, Fabian Walter, Julien Wolf
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引用次数: 0

摘要

我们展示了JWST/NIRSpec在静帧光学波段对PJ308--21系统的积分场光谱分析,这是一个在$z=6.2342$的类星体在其宿主星系与伴星系相互作用时捕捉到的。我们探测到了几条发射线( 和 )的空间扩展发射,并利用它们研究了星际介质电离阶段的特性:光电离辐射场的来源和硬度、金属性、尘埃红化、电子密度和温度以及恒星形成。我们还略微探测到了与伴星源相关的连续星光发射。我们发现该系统中至少有两个独立的卫星星系。类星体宿主看起来高度富集和遮蔽,具有典型的活动星系核的光离子化条件,而西部伴星系则显示出极小的尘埃消光、低金属性($Z)和恒星形成驱动的光离子化。与西部伴星相比,东部伴星显示出更高的消光和金属度($Z),它至少有一部分被附近的类星体光离子化。我们在伴星源中没有发现任何 AGN 的迹象。我们的研究表明,虽然类星体主星系的质量已经非常大,但它仍在通过吸积两个相对大质量的伴星源而迅速增大。这个数据集展示了 JWST 在揭示宇宙第一个千兆年中大质量星系的积累方面的强大功能。
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A quasar-galaxy merger at z~6.2: Rapid host growth via the accretion of two massive satellite galaxies
We present JWST/NIRSpec integral field spectroscopy in the rest-frame optical bands of the system PJ308--21, a quasar at $z=6.2342$ caught as its host galaxy interacts with companion galaxies. We detect the spatially extended emission of several emission lines ( and ), which we used to study the properties of the ionized phase of the interstellar medium: the source and hardness of the photoionizing radiation field, metallicity, dust reddening, electron density and temperature, and star formation. We also marginally detected continuum starlight emission associated with the companion sources. We find that at least two independent satellite galaxies are part of the system. While the quasar host appears highly enriched and obscured, with photoionization conditions typical of an Active Galactic Nucleus, the western companion shows minimal dust extinction, low metallicity ($Z and star formation driven photoionization. The eastern companion shows higher extinction and metallicity ($Z compared to the western companion, and it is at least partially photoionized by the nearby quasar. We do not find any indication of AGN in the companion sources. Our study shows that while the quasar host galaxy is already very massive dyn it is still rapidly building up by accreting two relatively massive star companion sources. This dataset showcases the power of JWST in exposing the buildup of massive galaxies in the first gigayear of the Universe.
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