论文标题

通过前景避免策略在21厘米强度图中对单点统计的测量

Measurements of one-point statistics in 21 cm intensity maps via foreground avoidance strategy

论文作者

Kittiwisit, Piyanat, Bowman, Judd D., Murray, Steven G., Gehlot, Bharat K., Jacobs, Daniel C., Beardsley, Adam P.

论文摘要

高降距21 cm波动的一分概率分布函数和高阶矩(方差,偏度和峰度)的测量是结构形成和进化过程中的非高斯性质性质的最直接统计探测之一。但是,天体物理前景和仪器系统学的污染在测量实际观察中的这些统计数据方面构成了重大挑战。在这项工作中,我们使用前向建模来通过前景回避策略来研究测量21厘米一分统计的可行性。利用K空间中前景的特征性楔形形状,我们应用了一个楔形滤波过滤器,该过滤器从模拟数据集中取出前景污染模式,该模式基于Revionization Array(HERA)仪器的氢时代,并测量从剩余的非污染模式的图像空间表示的单点统计数据。我们在不同频率带宽上进行不同程度的楔形割缘,发现频带的中心最不容易受到楔形切割的偏见。基于这一发现,我们引入了一种滚动滤波器方法,该方法允许在整个带宽上重建最佳的楔形切割21 〜cm强度图,并使用多个子频段上的楔形键入输出。我们执行蒙特卡洛模拟,以表明HERA应该能够通过滚动楔形方法在电离结束时在电离结束后的偏度和峰度的上升,如果可以控制傅立叶变换窗口函数的前景泄漏。

Measurements of the one-point probability distribution function and higher-order moments (variance, skewness, and kurtosis) of the high-redshift 21 cm fluctuations are among the most direct statistical probes of the non-Gaussian nature of structure formation and evolution during reionization. However, contamination from astrophysical foregrounds and instrument systematics pose significant challenges in measuring these statistics in real observations. In this work, we use forward modelling to investigate the feasibility of measuring 21 cm one-point statistics through a foreground avoidance strategy. Leveraging the characteristic wedge-shape of the foregrounds in k-space, we apply a wedge-cut filter that removes the foreground contaminated modes from a mock data set based on the Hydrogen Epoch of Reionization Array (HERA) instrument, and measure the one-point statistics from the image-space representation of the remaining non-contaminated modes. We experiment with varying degrees of wedge-cutting over different frequency bandwidths and find that the centre of the band is the least susceptible to bias from wedge-cutting. Based on this finding, we introduce a rolling filter method that allows reconstruction of an optimal wedge-cut 21~cm intensity map over the full bandwidth using outputs from wedge-cutting over multiple sub-bands. We perform Monte Carlo simulations to show that HERA should be able to measure the rise in skewness and kurtosis near the end of reionization with the rolling wedge-cut method if foreground leakage from the Fourier transform window function can be controlled.

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