论文标题

洛克曼孔场(Lockman Hole Field

Deep sub-arcsecond widefield imaging of the Lockman Hole field at 144 MHz

论文作者

Sweijen, F., van Weeren, R. J., Röttgering, H. J. A., Morabito, L. K., Jackson, N., Offringa, A. R., van der Tol, S., Veenboer, B., Oonk, J. B. R., Best, P. N., Bondi, M., Shimwell, T. W., Tasse, C., Thomson, A. P.

论文摘要

高质量的低频无线电调查有望促进我们对天体物理学中许多重要主题的理解,包括活跃银河核的生命周期(AGN),喷射粒子加速过程,恒星形成的历史和外部球磁层。目前,领先的低频调查达到了一些弧形的角度分辨率。但是,该分辨率尚不足以详细研究更紧凑和遥远的来源。因此,亚弧形分辨率是推进这些领域的下一个里程碑。低无线电频率的最大挑战是电离层。如果没有充分校正,电离层看到模糊的图像将图像划分为弧形甚至弧形尺度。此外,在此分辨率下,绘制低频射电望远镜的度尺度尺度视野所需的图像大小远大于典型的软件和硬件目前能够处理的范围。在这里,我们首次在低无线电频率下(据我们所知)广阔的亚弧形成像(据我们所知)。我们在几十个单个方向上得出电离层校正,并在成像过程中使用最近开发的成像算法有效地应用这些校正(ARXIV:1407.1943,ARXIV:1909.07226)。我们通过将其应用于国际低频阵列(Lofar)望远镜(ILT)(ARXIV:1305.3550)的八小时观察来证明我们的方法。这样做,我们以$ 0.3''的分辨率达到$ 25 \μ\ mathrm {jy \ beam}^{ - 1} $,以$ 0.3''$ 0.3''$ 0.3'$以$ 0.3''$ 0.3''$ 0.3'$以$ 0.3''$ 0.3''的分辨率以$ 7.4 \ \ mathrm {deg}^2 $ 144 \ \ mathrm {MHz} $地图。用于生产此图像的估计$ 250,000 $核心小时,舒适地适合可用计算设施的预算。该结果将使整个北部低频天空的未来映射在亚弧形分辨率下。

High quality low-frequency radio surveys have the promise of advancing our understanding of many important topics in astrophysics, including the life cycle of active galactic nuclei (AGN), particle acceleration processes in jets, the history of star formation, and exoplanet magnetospheres. Currently leading low-frequency surveys reach an angular resolution of a few arcseconds. However, this resolution is not yet sufficient to study the more compact and distant sources in detail. Sub-arcsecond resolution is therefore the next milestone in advancing these fields. The biggest challenge at low radio frequencies is the ionosphere. If not adequately corrected for, ionospheric seeing blurs the images to arcsecond or even arcminute scales. Additionally, the required image size to map the degree-scale field of view of low-frequency radio telescopes at this resolution is far greater than what typical soft- and hardware is currently capable of handling. Here we present for the first time (to the best of our knowledge) widefield sub-arcsecond imaging at low radio frequencies. We derive ionospheric corrections in a few dozen individual directions and apply those during imaging efficiently using a recently developed imaging algorithm (arXiv:1407.1943, arXiv:1909.07226). We demonstrate our method by applying it to an eight hour observation of the International LOw Frequency ARray (LOFAR) Telescope (ILT) (arXiv:1305.3550). Doing so we have made a sensitive $7.4\ \mathrm{deg}^2$ $144\ \mathrm{MHz}$ map at a resolution of $0.3''$ reaching $25\ μ\mathrm{Jy\ beam}^{-1}$ near the phase centre. The estimated $250,000$ core hours used to produce this image, fit comfortably in the budget of available computing facilities. This result will enable future mapping of the entire northern low-frequency sky at sub-arcsecond resolution.

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