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Powerful winds in high-redshift obscured and red quasars

机译:强大的风在高射频遮挡和红色的标准条件

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Quasar-driven outflows must have made their most significant impact on galaxy formation during the epoch when massive galaxies were forming most rapidly. To study the impact of quasar feedback, we conducted rest-frame optical integral field spectrograph (IFS) observations of three extremely red quasars (ERQs) and one type-2 quasar at z = 2-3, obtained with the NIFS and OSIRIS instruments at the Gemini North and W. M. Keck Observatory with the assistance of laser-guided adaptive optics. We use the kinematics and morphologies of the [OIII] 5007 angstrom and H alpha 6563 angstrom emission lines redshifted into the near-infrared to gauge the extents, kinetic energies and momentum fluxes of the ionized outflows in the quasars host galaxies. For the ERQs, the galactic-scale outflows are likely driven by radiation pressure in a high column density environment or due to an adiabatic shock. The outflows in the ERQs carry a significant amount of energy ranging from 0.05 to 5 per cent of the quasar's bolometric luminosity, powerful enough to have a significant impact on the quasar host galaxies. The outflows are resolved on kpc scales, the observed outflow sizes are generally smaller than other ionized outflows observed at high redshift. The high ratio between the momentum flux of the ionized outflow and the photon momentum flux from the quasar accretion disc and high nuclear obscuration makes these ERQs great candidates for transitional objects where the outflows are likely responsible for clearing material in the inner regions of each galaxy, unveiling the quasar accretion disc at optical wavelengths.
机译:当巨大的星系形成最快的巨大形成时,Quasar-Driven Offlows必须对星系形成产生最大的影响。为了研究准反馈的影响,我们进行了休息框架光学积分场光谱仪(IFS)观察三个极度红色的Quasars(ERQ)和Z = 2-3的一个类型 - 2 Quasar,用NIFs和Osiris仪器获得在激光引导的自适应光学的帮助下,Gemini North和WM Keck天文台。我们使用[oiii] 5007埃斯特罗姆和H alpha 6563埃赫斯特罗姆排放线的运动学和形态,红外线进入近红外,以衡量Quasars宿主星系中的电离流出的范围,动力学和动量势次。对于ERQS,银河系级流出可能在高柱密度环境中或由于绝热冲击而受到辐射压力。 ERQ中的外流带有大量的能量,范围为0.05至5%的Quasar的散热度,足够强大,以对Quasar宿主星系产生重大影响。在KPC尺度上分辨出外流,观察到的流出尺寸通常小于在高射频时观察到的其他电离外流。离电离流出盘的动量通量与来自Quasar Accretion圆盘的光子动量通量之间的高比率使得这些ERQS用于过渡物体的较大的候选人,其中流出的过流量可能负责每个星系的内部区域的清除材料,在光学波长下揭示Quasar Accretion盘。

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