论文标题

银河尺度的电离风,由两个类星体的超快速流出驱动

Galaxy-scale ionised winds driven by ultra-fast outflows in two nearby quasars

论文作者

Marasco, A., Cresci, G., Nardini, E., Mannucci, F., Marconi, A., Tozzi, P., Tozzi, G., Amiri, A., Venturi, G., Piconcelli, E., Lanzuisi, G., Tombesi, F., Mingozzi, M., Perna, M., Carniani, S., Brusa, M., Alighieri, S. di Serego

论文摘要

我们在窄场模式下使用Muse自适应光学(AO)数据来研究MR 2251-178和PG 1126-041中离子化气体的性质,附近有两个(Z〜0.06)明亮的类星体托管子PC Sub-PC Scale Ultra快速流出(UFOS)在X射线频段中检测到的。我们将光学发射从弥散气体分解为低速和高速分量。前者的特征是干净,规则的速度场和低(约80 km/s)的速度分散。它追踪在PG 1126-041中定期旋转气体,而在MR 2251-178中,它可能与最近合并或Flyby的潮汐碎片有关。发现另一个成分从细胞核中延伸至几个KPC,并显示出高度(约800 km/s)的速度分散和蓝移平均速度,如AGN驱动的流出所预期的那样。我们估计质量流出速率高达几月/年,动力学效率在0.1-0.4%之间,这与拥有相似亮度的AGN的星系相符。这些电离流出的动量速率与在子PC尺度上测得的不明飞行物测量的流出速率相当,与动量驱动的风传播一致。除非将大约100倍的额外动量锁定在巨大的分子风中,否则将排除纯能驱动的风。通过将我们的来源的流出属性与少数研究的QSO样本的流出特性进行比较,我们发现,从文献中托管了不明飞行物,我们发现风似乎在动量驱动或能量驱动的状态下有系统地存在,这表明这两个理论模型括起来很好地括起来的Agn-Driven Winds的物理学非常好。

We use MUSE adaptive optics (AO) data in Narrow Field Mode to study the properties of the ionised gas in MR 2251-178 and PG 1126-041, two nearby (z~0.06) bright quasars hosting sub-pc scale Ultra Fast Outflows (UFOs) detected in the X-ray band. We decompose the optical emission from diffuse gas into a low- and a high-velocity components. The former is characterised by a clean, regular velocity field and a low (~80 km/s) velocity dispersion. It traces regularly rotating gas in PG 1126-041, while in MR 2251-178 it is possibly associated to tidal debris from a recent merger or flyby. The other component is found to be extended up to a few kpc from the nuclei, and shows a high (~800 km/s) velocity dispersion and a blue-shifted mean velocity, as expected from AGN-driven outflows. We estimate mass outflow rates up to a few Mo/yr and kinetic efficiencies between 0.1-0.4 per cent, in line with those of galaxies hosting AGNs of similar luminosity. The momentum rates of these ionised outflows are comparable to those measured for the UFOs at sub-pc scales, consistent with a momentum-driven wind propagation. Pure energy-driven winds are excluded unless about 100x additional momentum is locked in massive molecular winds. By comparing the outflow properties of our sources with those of a small sample of well-studied QSOs hosting UFOs from the literature, we find that winds seem to systematically lie either in a momentum-driven or in an energy-driven regime, indicating that these two theoretical models bracket very well the physics of AGN-driven winds.

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