论文标题

预测模拟星系的FIR线

Predicting FIR lines from simulated galaxies

论文作者

Lupi, Alessandro, Pallottini, Andrea, Ferrara, Andrea, Bovino, Stefano, Carniani, Stefano, Vallini, Livia

论文摘要

远红外(FIR)发射线是研究星际介质的性质的强大工具,尤其是在高红移星系中,ALMA观测提供了前所未有的信息。用最新的宇宙学模拟来解释这种数据,并用多云解释了对这些系统的内部结构和气体动力学的见解。但是,迄今为止,尚未对这种分析的一致性和不确定性进行详细研究。在这里,我们比较了不同的方法,可以用最新的宇宙学模拟,无论是多云还是在非平衡化学中。我们发现[CII] $ _ {158μ} $预测对我们探索的模型变化是可靠的。 [OI]相对于[CII] $ _ {158μ} $的发射线,通常会追踪较冷和更致密的气体,因为这些线受到了气体的热力学状态和非平衡光电离电效应的强烈影响。由于相同的原因,[OI]线代表了限制发射模型的绝佳工具,因此,针对这些线路的未来观察结果至关重要。

Far-infrared (FIR) emission lines are a powerful tool to investigate the properties of the interstellar medium, especially in high-redshift galaxies, where ALMA observations have provided unprecedented information. Interpreting such data with state-of-the-art cosmological simulations post-processed with CLOUDY, has provided insights on the internal structure and gas dynamics of these systems. However, no detailed investigation of the consistency and uncertainties of this kind of analysis has been performed to date. Here, we compare different approaches to estimate FIR line emission from state-of-the-art cosmological simulations, either with CLOUDY or with on-the-fly non-equilibrium chemistry. We find that [CII]$_{158μ}$ predictions are robust to the model variations we explored. [OI] emission lines, that typically trace colder and denser gas relative to [CII]$_{158μ}$, are instead model-dependent, as these lines are strongly affected by the thermodynamic state of the gas and non-equilibrium photoionisation effects. For the same reasons, [OI] lines represent an excellent tool to constrain emission models, hence future observations targeting these lines will be crucial.

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