A decade of sub-arcsecond imaging with the International LOFAR Telescope

IF 1.8 4区 物理与天体物理 Q3 ASTRONOMY & ASTROPHYSICS
Leah K. Morabito, Neal Jackson, Jurjen de Jong, Emmy Escott, Christian Groeneveld, Vijay Mahatma, James Petley, Frits Sweijen, Roland Timmerman, Reinout J. van Weeren
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Abstract

The International LOFAR Telescope (ILT) is a pan-European radio interferometer with baselines up to 2000 km. This provides sub-arcsecond resolution at frequencies of <200 MHz. Since starting science operations in 2012, the ILT has carried out observations for the state-of-the-art LOFAR Two-metre Sky Survey, which has 6 arcsec resolution at 144 MHz. Wide-area surveys at low frequencies, while scientifically productive, have to compromise on resolution. Sub-arcsecond imaging with the ILT has become more accessible over the last decade, thanks to efforts to build a publicly available pipeline using LOFAR-specific tools, which has resulted in a dramatic increase in the number of publications. The ILT’s combination of resolution, field of view, and low observing frequency make it a unique instrument for a wide range of scientific applications, and it will remain unparalleled even in the era of the Square Kilometre Array Observatory. Here we provide an overview of the technical considerations and calibration methods sub-arcsecond imaging with the ILT. This is followed by a review of the unique capabilities unlocked by sub-arcsecond imaging with the ILT, using examples from the literature for demonstration. Finally we describe ongoing work including: surveying large areas of the sky at high resolution, going deeper in fields with excellent ancillary information, producing images of polarisation, and extending to lower frequencies (<100 MHz).

十年来用国际LOFAR望远镜进行亚弧秒成像
国际LOFAR望远镜(ILT)是一个泛欧无线电干涉仪,基线可达2000公里。这在200兆赫的频率下提供亚弧秒分辨率。自2012年开始科学运作以来,ILT已经为最先进的LOFAR两米巡天进行了观测,该巡天在144 MHz下具有6弧秒的分辨率。低频率的广域调查虽然在科学上富有成效,但必须在分辨率上妥协。在过去的十年中,由于使用lofar专用工具建立了一个公开可用的管道,使得ILT的亚弧秒成像变得更加容易获得,这导致了出版物数量的急剧增加。ILT的分辨率、视野和低观测频率的结合使其成为广泛科学应用的独特仪器,即使在平方公里阵列天文台时代,它也将保持无与伦比的地位。在这里,我们提供了一个概述的技术考虑和校准方法与ILT亚弧秒成像。接下来是对ILT亚弧秒成像解锁的独特功能的回顾,使用文献中的示例进行演示。最后,我们描述了正在进行的工作,包括:以高分辨率测量大面积天空,在具有优秀辅助信息的领域深入,产生偏振图像,并扩展到较低频率(100 MHz)。
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来源期刊
Astrophysics and Space Science
Astrophysics and Space Science 地学天文-天文与天体物理
CiteScore
3.40
自引率
5.30%
发文量
106
审稿时长
2-4 weeks
期刊介绍: Astrophysics and Space Science publishes original contributions and invited reviews covering the entire range of astronomy, astrophysics, astrophysical cosmology, planetary and space science and the astrophysical aspects of astrobiology. This includes both observational and theoretical research, the techniques of astronomical instrumentation and data analysis and astronomical space instrumentation. We particularly welcome papers in the general fields of high-energy astrophysics, astrophysical and astrochemical studies of the interstellar medium including star formation, planetary astrophysics, the formation and evolution of galaxies and the evolution of large scale structure in the Universe. Papers in mathematical physics or in general relativity which do not establish clear astrophysical applications will no longer be considered. The journal also publishes topically selected special issues in research fields of particular scientific interest. These consist of both invited reviews and original research papers. Conference proceedings will not be considered. All papers published in the journal are subject to thorough and strict peer-reviewing. Astrophysics and Space Science features short publication times after acceptance and colour printing free of charge.
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