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Widespread QSO-driven outflows in the early Universe ?

机译:早期宇宙

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We present the stacking analysis of a sample of 48 quasi-stellar objects (QSOs) at 4.5?< ? z ?< ?7.1 detected by the Atacama Large Millimetre Array (ALMA) in the [CII] λ 158 μ m emission line to investigate the presence and the properties of massive, cold outflows associated with broad wings in the [CII] profile. The high sensitivity reached through this analysis allows us to reveal very broad [CII] wings tracing the presence of outflows with velocities in excess of 1000 km s~(?1). We find that the luminosity of the broad [CII] emission increases with L _(AGN), while it does not significantly depend on the star formation rate of the host galaxy, indicating that the central active galactic nucleus (AGN) is the main driving mechanism of the [CII] outflows in these powerful, distant QSOs. From the stack of the ALMA cubes, we derive an average outflow spatial extent of ~3.5 kpc. The average atomic neutral mass outflow rate inferred from the stack of the whole sample is ? _(out)~ 100 M _(⊙)yr~(?1), while for the most luminous systems it increases to ~200? M _(⊙)yr~(?1). The associated outflow kinetic power is about 0.1% of L _(AGN), while the outflow momentum rate is ~ L _(AGN)/ c or lower, suggesting that these outflows are either driven by radiation pressure onto dusty clouds or, alternatively, are driven by the nuclear wind and energy conserving but with low coupling with the interstellar medium. We discuss the implications of the resulting feedback effect on galaxy evolution in the early Universe.
机译:我们提出了一个在48?<?的48个准星体(QSO)样本的堆叠分析。通过[CII]λ158μm发射线中的阿塔卡马大型毫米波阵列(ALMA)检测到的z≤<7.1,以调查与[CII]轮廓中的宽翼相关的大量冷流出的存在和性质。通过该分析获得的高灵敏度使我们能够揭示出非常宽广的[CII]机翼,这些机翼跟踪了速度超过1000 km s〜(?1)的流出。我们发现,广泛的[CII]发射的光度随着L _(AGN)的增加而增加,而并不显着取决于宿主星系的恒星形成率,这表明中央活动星系核(AGN)是主要驱动力这些强大,遥远的QSO中[CII]流出的机制。从ALMA多维数据集的堆栈中,我们得出的平均流出空间范围约为3.5 kpc。从整个样品堆中推算出的平均原子中性质量流出速率为? _(out)〜100 M _(⊙)yr〜(?1),而对于大多数发光系统,它增加到〜200? M _(⊙)yr〜(?1)。相关的流出动能约为L _(AGN)的0.1%,而流出动量速率约为L _(AGN)/ c或更低,这表明这些流出是由辐射压力驱动的尘埃云,或者是由核风和能量守恒驱动,但与星际介质的耦合程度较低。我们讨论了早期宇宙中所产生的反馈效应对星系演化的影响。

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