论文标题
杂交非常长的基线干涉法成像和与主题建模
Hybrid Very Long Baseline Interferometry Imaging and Modeling with Themis
论文作者
论文摘要
从很长的基线干涉观测中生成图像会带来困难,而且通常不是独特的反转问题。通过引入约束,某些通用(例如,强度的阳性)以及其他因物理考虑(例如平滑度,仪器分辨率)而引起的,可以简化此问题。需要同时解决U-V平面中的仪器系统不确定性和稀疏覆盖范围,这使它更加复杂。我们在参数估计框架主题中报告了一种新的贝叶斯图像重建技术,该技术已为事件地平线望远镜开发。这有两个关键特征:首先,对图像重建的完整贝叶斯处理使图像产生完整的后部,从而可以对图像特征的统计意义进行严格和定量的研究。其次,可以与图像重建同时无缝合并直接建模的特征。我们通过在模拟M87数据的重建中纳入狭窄的斜线,以检测和表征光子环的重建来证明第二个功能。我们表明,可以获得高保真光子环的大小,从而实现质量测量值,其准确性为2%-5%,对天体物理不确定性根本不敏感,并为一般相对性的精确测试创造了机会。
Generating images from very long baseline interferometric observations poses a difficult, and generally not unique, inversion problem. This problem is simplified by the introduction of constraints, some generic (e.g., positivity of the intensity) and others motivated by physical considerations (e.g., smoothness, instrument resolution). It is further complicated by the need to simultaneously address instrumental systematic uncertainties and sparse coverage in the u-v plane. We report a new Bayesian image reconstruction technique in the parameter estimation framework Themis that has been developed for the Event Horizon Telescope. This has two key features: first, the full Bayesian treatment of the image reconstruction makes it possible to generate a full posterior for the images, permitting a rigorous and quantitative investigation into the statistical significance of image features. Second, it is possible to seamlessly incorporate directly modeled features simultaneously with image reconstruction. We demonstrate this second capability by incorporating a narrow, slashed ring in reconstructions of simulated M87 data in an attempt to detect and characterize the photon ring. We show that it is possible to obtain high-fidelity photon ring sizes, enabling mass measurements with accuracies of 2%-5% that are essentially insensitive to astrophysical uncertainties, and creating opportunities for precision tests of general relativity.