论文标题

贝叶斯的高保真性干涉校准I:数学形式主义

A Bayesian approach to high fidelity interferometric calibration I: mathematical formalism

论文作者

Sims, Peter H., Pober, Jonathan C., Sievers, Jonathan L.

论文摘要

高保真无线电干涉数据校准校准,在校准数据中最大程度地减少伪造的光谱结构在天体物理应用中至关重要,例如21 cm宇宙学,这些应用依赖于了解不同天体物理发射成分的相对光谱平滑性的知识,以提取感兴趣的信号。现有的无线电干涉测量校准方法已证明,如果用于校准数据的天空模型不完整,则可以将伪造的光谱结构授予校准数据。在本文中,我们介绍了贝叶斯卡尔(Bayescal):一种新的解决方案,用于干涉校准中的天空模型不完整问题,旨在实现高保真性数据校准。贝叶斯数据模型为天空前向模型的先验成分提供了统计模型,用于缺失和不确定的通量对数据的贡献,并受到模型中功率的先验约束。我们演示了该模型的参数如何被分析地将其边缘化,从而降低了要从校准参数的后验概率分布中直接采样的参数空间的维度。此外,我们还展示了如何使用基于理论和测量的限制来限制仪器收益的频谱平滑度,以限制校准解决方案。在同伴论文中,我们将此算法应用于模拟观察结果,并证明相对于标准校准方法,它最多可在虚光频谱波动中抑制功率的四个数量级抑制。

High fidelity radio interferometric data calibration that minimises spurious spectral structure in the calibrated data is essential in astrophysical applications, such as 21 cm cosmology, which rely on knowledge of the relative spectral smoothness of distinct astrophysical emission components to extract the signal of interest. Existing approaches to radio interferometric calibration have been shown to impart spurious spectral structure to the calibrated data if the sky model used to calibrate the data is incomplete. In this paper, we introduce BayesCal: a novel solution to the sky-model incompleteness problem in interferometric calibration, designed to enable high fidelity data calibration. The BayesCal data model supplements the a priori known component of the forward model of the sky with a statistical model for the missing and uncertain flux contribution to the data, constrained by a prior on the power in the model. We demonstrate how the parameters of this model can be marginalised out analytically, reducing the dimensionality of the parameter space to be sampled from and allowing one to sample directly from the posterior probability distribution of the calibration parameters. Additionally, we show how physically motivated priors derived from theoretical and measurement-based constraints on the spectral smoothness of the instrumental gains can be used to constrain the calibration solutions. In a companion paper, we apply this algorithm to simulated observations with a HERA-like array and demonstrate that it enables up to four orders of magnitude suppression of power in spurious spectral fluctuations relative to standard calibration approaches.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源