论文标题

Z = 6.42 Quasar J1148+5251的延长星际介质的物理约束:[CII] 158UM,[NII] 205UM和[OI] 146UM观察

Physical constraints on the extended interstellar medium of the z=6.42 quasar J1148+5251: [CII] 158um, [NII] 205um and [OI] 146um observations

论文作者

Meyer, Romain A., Walter, Fabian, Cicone, Claudia, Cox, Pierre, Decarli, Roberto, Neri, Roberto, Novak, Mladen, Pensabene, Antonio, Riechers, Dominik, Weiss, Axel

论文摘要

我们报告了[CII],[NII]和[OI]原子细胞结构线和J1148+5251的灰尘连续排放的新北部扩展毫米阵列(NOEMA)观察结果,Z = 6.42 Quasar,探测其星形介质(ISM)的物理特性。径向平均的[CII]和尘埃连续排放具有相似的扩展(最高$θ= 2.51^{+0.46} _ { - 0.25} \ \ \ rm {arcSec} $,对应于$ r = 9.8^{+3.3} _ {+3.3} _ { - 2.1} $ { - 2.1} $ { - 2.1} $横梁横向卷积),确认J1148+5251是具有最大[CII]发射[CII]的储层,在这些时期已知。新的宽带观察结果使我们能够准确地限制连续性的发射,并且在统计学上不需要在先前的研究中报告的宽[CII]线翼。我们还报告了J1148+5251中[OI]和(暂定)[NII]发射线的第一次检测。使用[CII],[NII],[OI]和先前测量的[CI]发射线的细胞结构线(FSL)比,我们表明J1148+5251具有与较低的 - 红色(Ultra) - 露骨的红外星系相比具有相似的ISM条件。 FSL比率的多云建模不包括X射线主导区域(XDR)和偏向于光解离区域(PDR)作为FSL发射的起源。我们发现高辐射场($ 10^{3.5-4.5} \,g_0 $),高气密度($ n \ simeq 10^{3.5-4.5} \,\ rm {cm}^{ - 3} $)和$ 10^{23} $ $ 10^{23} $的圆柱密度FSL比率很好。

We report new Northern Extended Millimeter Array (NOEMA) observations of the [CII], [NII] and [OI] atomic fine structure lines and dust continuum emission of J1148+5251, a z=6.42 quasar, that probe the physical properties of its interstellar medium (ISM). The radially-averaged [CII] and dust continuum emission have similar extensions (up to $θ= 2.51^{+0.46}_{-0.25}\ \rm{arcsec}$, corresponding to $r= 9.8^{+3.3}_{-2.1}\ \rm{kpc}$ accounting for beam-convolution), confirming that J1148+5251 is the quasar with the largest [CII]-emitting has reservoir known at these epochs.Moreover, if the [CII] emission is examined only along its NE-SW axis, a significant excess ($>5.8σ$) of [CII] emission (with respect to the dust) is detected. The new wide--bandwidth observations enable us to accurately constrain the continuum emission, and do not statistically require the presence of broad [CII] line wings that were reported in previous studies. We also report the first detection of the [OI] and (tentatively) [NII] emission lines in J1148+5251. Using Fine Structure Lines (FSL) ratios of the [CII], [NII], [OI] and previously measured [CI] emission lines, we show that J1148+5251 has similar ISM conditions compared to lower--redshift (ultra)-luminous infrared galaxies. CLOUDY modelling of the FSL ratios exclude X--ray dominated regions (XDR) and favours photodissociation regions (PDR) as the origin of the FSL emission. We find that a high radiation field ($10^{3.5-4.5}\,G_0$), high gas density ($n \simeq 10^{3.5-4.5}\, \rm{cm}^{-3}$) and HI column density of $10^{23} \,\rm{cm^{-2}}$ reproduce the observed FSL ratios well.

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