论文标题
用形状的建模和剥离扩展来源:fornax案例研究
Modelling and peeling extended sources with shapelets: a Fornax A case study
论文作者
论文摘要
为了从回报时期(EOR)对21 cm信号进行功率谱(PS)检测,必须避免/减去明亮的前景源。诸如Fornax A之类的来源是由于弧线从弧秒到一定程度的空间结构引起的建模挑战。我们将建模与多尺度(MS)清洁组件与“ Shapelets”(Shapelets)进行了比较,这是一组替代基础功能。我们介绍了一个新的基于图像的塑形建模软件包Shamfi。我们还引入了一个新的CUDA仿真代码(WODEN),以生成点源,高斯和塑形组件,以将其用于可见性。我们通过对Fornax A的模拟进行建模,从模拟可见度中剥离模型并产生残留PS来测试性能。我们发现,即使数据的角度分辨率更改,塑形方法也始终减少大角度发射。我们发现,在增加数据的角度分辨率时,MS清洁模型在大角度尺度上会恶化。在对实际MWA数据进行测试时,由于仍然存在其他主导系统,因此在实际数据中未看到预期的改进。通过进一步的模拟,我们发现通过当前处理管道可获得的预期差异低于可获得的差异。我们得出的结论是,形状对于减去扩展星系是值得的,一旦解决了其他系统学,将来可能对EOR检测至关重要。
To make a power spectrum (PS) detection of the 21 cm signal from the Epoch of Reionisation (EoR), one must avoid/subtract bright foreground sources. Sources such as Fornax A present a modelling challenge due to spatial structures spanning from arc seconds up to a degree. We compare modelling with multi-scale (MS) CLEAN components to 'shapelets', an alternative set of basis functions. We introduce a new image-based shapelet modelling package, SHAMFI. We also introduce a new CUDA simulation code (WODEN) to generate point source, Gaussian, and shapelet components into visibilities. We test performance by modelling a simulation of Fornax A, peeling the model from simulated visibilities, and producing a residual PS. We find the shapelet method consistently subtracts large-angular-scale emission well, even when the angular-resolution of the data is changed. We find that when increasing the angular-resolution of the data, the MS CLEAN model worsens at large angular-scales. When testing on real MWA data, the expected improvement is not seen in real data because of the other dominating systematics still present. Through further simulation we find the expected differences to be lower than obtainable through current processing pipelines. We conclude shapelets are worthwhile for subtracting extended galaxies, and may prove essential for an EoR detection in the future, once other systematics have been addressed.