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Precise radio astrometry and new developments for the next-generation of instruments

机译:下一代仪器的精确无线电星形测量和新的开发

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We present a technique-led review of the progression of precise radio astrometry, from the first demonstrations, half a century ago, until to date and into the future. We cover the developments that have been fundamental to allow high accuracy and precision astrometry to be regularly achieved. We review the opportunities provided by the next generation of instruments coming online, which are primarily: SKA, ngVLA, and pathfinders, along with EHT and other (sub)mm-wavelength arrays, Space-VLBI, Geodetic arrays, and optical astrometry from GAIA. From the historical development, we predict the future potential astrometric performance, and, therefore, the instrumental requirements that must be provided to deliver these. The next generation of methods will allow ultra-precise astrometry to be performed at a much wider range of frequencies (hundreds of MHz to hundreds of GHz). One of the key potentials is that astrometry will become generally applicable, and, therefore, unbiased large surveys can be performed. The next-generation methods are fundamental in allowing this. We review the small but growing number of major astrometric surveys in the radio, to highlight the scientific impact that such projects can provide. Based on these perspectives, the future of radio astrometry is bright. We foresee a revolution coming from: ultra-high-precision radio astrometry, large surveys of many objects, improved sky coverage, and at new frequency bands other than those available today. These will enable the addressing of a host of innovative open scientific questions in astrophysics.
机译:从半个世纪前的第一次演示到现在,再到未来,我们对精确射电天体测量的进展进行了一次以技术为主导的回顾。我们介绍了为定期实现高精度和高精度天体测量而进行的基础性发展。我们回顾了即将上线的下一代仪器所提供的机会,这些仪器主要是:SKA、ngVLA和探路者,以及EHT和其他(亚)毫米波长阵列、空间VLBI、大地测量阵列,以及来自GAIA的光学天体测量。从历史发展来看,我们预测了未来可能的天体测量性能,以及为实现这些性能而必须提供的仪器要求。下一代的方法将允许在更宽的频率范围内(数百MHz到数百GHz)进行超精密天体测量。其中一个关键潜力是天体测量将变得普遍适用,因此,可以进行无偏的大型测量。下一代方法是实现这一点的基础。我们回顾了广播中少量但越来越多的大型天体测量,以强调此类项目可以提供的科学影响。基于这些观点,射电天体测量的未来是光明的。我们预见了一场革命即将到来:超高精度射电天体测量、对许多物体的大规模测量、改善的天空覆盖率,以及在现有频带之外的新频带上。这将有助于解决天体物理学中的一系列创新性开放科学问题。

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