论文标题

在高Z星系和电源观测的背景下,解释Z〜9.1处的Lofar 21 cm信号上限

Interpreting LOFAR 21-cm signal upper limits at z~9.1 in the context of high-z galaxy and reionisation observations

论文作者

Greig, Bradley, Mesinger, Andrei, Koopmans, Léon V. E., Ciardi, Benedetta, Mellema, Garrelt, Zaroubi, Saleem, Giri, Sambit K., Ghara, Raghunath, Ghosh, Abhik, Iliev, Ilian T., Mertens, Florent G., Mondal, Rajesh, Offringa, André R., Pandey, Vishambhar N.

论文摘要

使用低频阵列(Lofar)的21厘米功率频谱上的最新上限,我们探索与数据不一致的参数空间区域。我们使用21CMMC的21CMMC,这是21cmfast的蒙特卡洛马尔可夫链采样器,直接在完全贝叶斯框架中直接模拟3D宇宙21厘米信号。我们使用21cmfast的天体物理参数化,其中包括质量依赖的星形形成率和电离逃逸部分以及软带X射线亮度,以对高$ z $星系的性质限制。此外,我们将参数空间的不散布区域与现有的观察性约束联系起来,例如超紫罗兰色(UV)发光函数,背景紫外光电离率,紫外线介质(IgM)中性分数和电子散射光学深度。我们发现,Lofar以$ z \ of的21厘米信号限制的所有模型被其他探针排除在$ \gtrsim2σ$下。最后,我们对Lofar的IGM自旋温度限制,在IGM中性分数范围内,置于95%的置信度低于$ \ sim2.6 $ k,\ sims. 0.15 \ sillssim \ bar {x} _ {x} _ {注意,这些限制仅从单个红移箱中的141小时数据中获得。随着上限的更严格,将在不久的将来从Lofar到达多个红移垃圾箱,将排除更可行的模型。我们的方法证明了前向建模工具(例如21CMMC)将21-CM观测值与其他高$ z $探针结合起来以限制星体物理学的潜力。

Using the latest upper limits on the 21-cm power spectrum at $z\approx9.1$ from the Low Frequency Array (LOFAR), we explore regions of parameter space which are inconsistent with the data. We use 21CMMC, a Monte Carlo Markov Chain sampler of 21cmFAST which directly forward models the 3D cosmic 21-cm signal in a fully Bayesian framework. We use the astrophysical parameterisation from 21cmFAST, which includes mass-dependent star formation rates and ionising escape fractions as well as soft-band X-ray luminosities to place limits on the properties of the high-$z$ galaxies. Further, we connect the disfavoured regions of parameter space with existing observational constraints on the Epoch of Reionisation such as ultra-violet (UV) luminosity functions, background UV photoionisation rate, intergalactic medium (IGM) neutral fraction and the electron scattering optical depth. We find that all models exceeding the 21-cm signal limits set by LOFAR at $z\approx9.1$ are excluded at $\gtrsim2σ$ by other probes. Finally, we place limits on the IGM spin temperature from LOFAR, disfavouring at 95 per cent confidence spin temperatures below $\sim2.6$ K across an IGM neutral fraction range of $0.15 \lesssim \bar{x}_{H{\scriptscriptstyle I}} \lesssim 0.6$. Note, these limits are only obtained from 141 hrs of data in a single redshift bin. With tighter upper limits, across multiple redshift bins expected in the near future from LOFAR, more viable models will be ruled out. Our approach demonstrates the potential of forward modelling tools such as 21CMMC in combining 21-cm observations with other high-$z$ probes to constrain the astrophysics of galaxies.

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