论文标题

来自电离时代的SARAS2数据的全面贝叶斯重新分析

A Comprehensive Bayesian re-analysis of the SARAS2 data from the Epoch of Reionization

论文作者

Bevins, H. T. J., Acedo, E. de Lera, Fialkov, A., Handley, W. J., Singh, S., Subrahmanyan, R., Barkana, R.

论文摘要

我们使用Polychord实施的嵌套采样,对SARAS2的天空平均21 cm实验数据进行了贝叶斯重新分析,该采样是通过Polychord实施的,具有频谱平滑的前景建模,该模型以MaxSmooth,MaxSmoth,详细的系统建模和与GlobalEmu的快速信号仿真实现。我们的分析与先前对SARAS2数据的分析不同,通过使用完整的贝叶斯框架以及前景和非平滑系统的单独建模。我们使用最新的信号模型,包括莱曼$α$和由天体物理参数(例如星形形成效率,X射线加热效率,恒星形成星系的最小病毒圆速度,CMB光学深度和X射线光谱分布的低能量截止)的CMB加热。我们考虑通过早期星系发射产生的CMB高于无线电背景的模型,并通过无线电生产效率进行参数。鉴定出一个非平滑系统的系统性,并将其建模为电子引入的频率阻尼正弦,并与天空分开。后者是由天线的总效率调节的,并受到数据的偏爱。我们考虑数据中噪声的三种不同模型。 SARAS2对单个天体物理参数的约束非常弱,但是我们确定了不传递信号的类别。我们对具有高lyman-$α$通量和弱加热和更自信的异国情调模型的弱分配标准的天体物理模型,具有高lyman-$ $α$通量,低X射线效率和高无线电生产效率。

We present a Bayesian re-analysis of the sky-averaged 21-cm experimental data from SARAS2 using nested sampling implemented with polychord, spectrally smooth foreground modelling implemented with maxsmooth, detailed systematic modelling and rapid signal emulation with globalemu. Our analysis differs from previous analysis of the SARAS2 data through the use of a full Bayesian framework and separate modelling of the foreground and non-smooth systematics. We use the most up-to-date signal models including Lyman-$α$ and CMB heating parameterised by astrophysical parameters such as star formation efficiency, X-ray heating efficiency, minimal virial circular velocity of star forming galaxies, CMB optical depth and the low energy cutoff of the X-ray spectral energy distribution. We consider models with an excess radio background above the CMB produced via radio emission from early galaxies and parameterised by a radio production efficiency. A non-smooth systematic is identified and modelled as both a frequency damped sinusoid introduced by the electronics and separately from the sky. The latter is modulated by the total efficiency of the antenna and marginally favoured by the data. We consider three different models for the noise in the data. The SARAS2 constraints on individual astrophysical parameters are extremely weak however we identify classes of disfavoured signals. We weakly disfavour standard astrophysical models with high Lyman-$α$ fluxes and weak heating and more confidently disfavour exotic models with high Lyman-$α$ fluxes, low X-ray efficiencies and high radio production efficiencies in early galaxies.

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