论文标题

探测最红色的“极红色类星体”(ERQ)周围的内膜介质和类星体照明(ERQ)

Probing the Inner Circumgalactic Medium and Quasar Illumination around the Reddest `Extremely Red Quasar' (ERQ)

论文作者

Lau, Marie Wingyee, Hamann, Fred, Gillette, Jarred, Perrotta, Serena, Rupke, David S. N., Wylezalek, Dominika, Zakamska, Nadia L.

论文摘要

尘土飞扬的类星可以正处于星系进化的年轻阶段,并具有明显的类星体反馈。最近发现的$ z \ sim $ 〜2--4的发光,极红色的类星体的人群具有与异常强大的类星体驱动的流出相关的极端频谱属性。我们介绍了凯克/kcwi的观察结果,对$ z = $ \,2.3184的观察结果非常快[\ ion {o} {iii}] Ly $α$ HALO跨越$ \ sim $ 100〜kpc。光环在运动学上是安静的,带有速度分散$ \ sim $ 300〜 km〜s $^{ - 1} $,并且在暗物质圆速度上没有扩展到空间分辨率$ \ sim $ 6〜kpc从Quasar到Quasar。我们检测空间分辨的\ ion {he} {ii}〜$λ$ 1640和\ ion {c} {c} {iv}〜$λ$ 1549具有类似于ly $ ly $ ly $α$ halo和狭窄组件的动力学的排放和[\ ion {o} {o}的狭窄成分。类星体发红充当冠状动脉,允许对最内向的光环的看法。狭窄的$ ly $α$尖峰在类星体频谱中是内部光晕发射,证实了宽\ ion {c} {c} {iv}〜$λ$ 1549在未解决的Quasar中,$ 2240 $ 〜S $ 〜S $^s $^{ - 1} $相对于Halo架,$ 2240 $ 〜S $ 〜S $^s $^s $。我们提出内部光环是由过去驱动的中等速度流出的主导,而外部光环则由流入占主导地位。晕圈的高中心浓度和内部区域的对称形态与ERQ比蓝色类星体更早的进化阶段一致。 \ ion {he} {ii}〜$λ$ 1640/ly $ ly $α$的内halo比和整体光环的不对称水平与〜II类Quasars不同,这表明该ERQ的独特物理条件超出了与其他Quasar种群的方向差异。我们没有发现在发射$α$ halo中的机械类星体反馈的证据。

Dusty quasars might be in a young stage of galaxy evolution with prominent quasar feedback. A recently discovered population of luminous, extremely red quasars at $z\sim$~2--4 has extreme spectral properties related to exceptionally powerful quasar-driven outflows. We present Keck/KCWI observations of the reddest known ERQ, at $z=$\,2.3184, with extremely fast [\ion{O}{III}]~$λ$5007 outflow at $\sim$6000~km~s$^{-1}$. The Ly$α$ halo spans $\sim$100~kpc. The halo is kinematically quiet, with velocity dispersion $\sim$300~km~s$^{-1}$ and no broadening above the dark matter circular velocity down to the spatial resolution $\sim$6~kpc from the quasar. We detect spatially-resolved \ion{He}{II}~$λ$1640 and \ion{C}{IV}~$λ$1549 emissions with kinematics similar to the Ly$α$ halo and a narrow component in the [\ion{O}{III}]~$λ$5007. Quasar reddening acts as a coronagraph allowing views of the innermost halo. A narrow Ly$α$ spike in the quasar spectrum is inner halo emission, confirming the broad \ion{C}{IV}~$λ$1549 in the unresolved quasar is blueshifted by $2240$~km~s$^{-1}$ relative to the halo frame. We propose the inner halo is dominated by moderate-speed outflow driven in the past and the outer halo dominated by inflow. The high central concentration of the halo and the symmetric morphology of the inner region are consistent with the ERQ being in earlier evolutionary stage than blue quasars. The \ion{He}{II}~$λ$1640/Ly$α$ ratio of the inner halo and the asymmetry level of the overall halo are dissimilar to Type~II quasars, suggesting unique physical conditions for this ERQ that are beyond orientation differences from other quasar populations. We find no evidence of mechanical quasar feedback in the Ly$α$-emitting halo.

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