论文标题

Airopa III:测试模拟和天上数据

AIROPA III: Testing Simulated and On-Sky Data

论文作者

Turri, Paolo, Lu, Jessica R., Witzel, Gunther, Ciurlo, Anna, Do, Tuan, Ghez, Andrea M., Britton, Matthew C., Ragland, Sam, Terry, Sean K.

论文摘要

来自W. M. Keck天文台的自适应光学图像已提供了许多有影响力的科学结果,包括检测多系统小行星,银河系中心的超质量黑洞以及直接成像的系外行星。具体而言,使用周围恒星簇的轨道,使用这些图像的精确和准确的天文学来测量超质量黑洞的质量。尽管取得了这些成功,但改进天文测量的主要障碍之一是仪器传递的点传播函数的空间和时间变异性。 Airopa是使用点传播功能拟合以及点传播函数重建技术的自适应光学图像的天体和光度分析的软件包。在自适应光学点传播函数重建中,使用仪器性能和大气湍流的知识用于预测观察的长期暴露点传播函数。在本文中,我们在银河中心的模拟图像和天上图像上介绍了测试的结果。我们发现,我们的方法在考虑仪器内部的静态像差方面非常可靠,但是它并不能显着提高天空的准确性,这可能是由于未校准的望远镜畸变所致。

Adaptive optics images from the W. M. Keck Observatory have delivered numerous influential scientific results, including detection of multi-system asteroids, the supermassive black hole at the center of the Milky Way, and directly imaged exoplanets. Specifically, the precise and accurate astrometry these images yield was used to measure the mass of the supermassive black hole using orbits of the surrounding star cluster. Despite these successes, one of the major obstacles to improved astrometric measurements is the spatial and temporal variability of the point-spread function delivered by the instruments. AIROPA is a software package for the astrometric and photometric analysis of adaptive optics images using point-spread function fitting together with the technique of point-spread function reconstruction. In adaptive optics point-spread function reconstruction, the knowledge of the instrument performance and of the atmospheric turbulence is used to predict the long-exposure point-spread function of an observation. In this paper we present the results of our tests using AIROPA on both simulated and on-sky images of the Galactic Center. We find that our method is very reliable in accounting for the static aberrations internal to the instrument, but it does not improve significantly the accuracy on sky, possibly due to uncalibrated telescope aberrations.

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