论文标题
太空VLBI 2020:科学技术期货会议摘要
Space VLBI 2020: Science and Technology Futures Conference Summary
论文作者
论文摘要
“太空VLBI 2020:科学技术未来”会议是太空系列中高分辨率无线电干涉仪的未来第二次会议。第一次会议(2018年9月5日至6日;荷兰Noordwijk)着重于与太空天线相结合的长期基线干涉测量法(VLBI)的全部科学应用程序。因此,观察频率(波长)被认为范围从低于1〜MHz(> 300 m)到300〜GHz(<1 mm)。在第二次会议上,将重点缩小到任务概念和支持技术,以使最高的角度分辨率观测值在30〜GHz及更高的频率下(<1 cm)。 这种焦点的狭窄是由科学和技术考虑因素驱动的。首先,从放射线抗体任务和事件范围望远镜(EHT)的结果引起了极大的兴奋,以研究黑洞(BH)积聚磁盘的内部(BH)积聚磁盘和JET的内部以及一般相对论(GR)的测试元素。其次,在100 〜MHz和100〜GHz之间,涉及空间VLBI的技术和要求差异很大。一个相关的考虑因素是,有许多现有的工具或任务概念,频率约为100〜MHz及以下,而这已经有一段时间了,因为注意力以10〜GHz的频率专用于太空VLBI。 这次会议摘要试图捕获发生的演讲和讨论的要素。
The "Space VLBI 2020: Science and Technology Futures" meeting was the second in The Future of High-Resolution Radio Interferometry in Space series. The first meeting (2018 September 5--6; Noordwijk, the Netherlands) focused on the full range of science applications possible for very long baseline interferometry (VLBI) with space-based antennas. Accordingly, the observing frequencies (wavelengths) considered ranged from below 1~MHz (> 300 m) to above 300~GHz (< 1 mm). For this second meeting, the focus was narrowed to mission concepts and the supporting technologies to enable the highest angular resolution observations at frequencies of 30~GHz and higher (< 1 cm). This narrowing of focus was driven by both scientific and technical considerations. First, results from the RadioAstron mission and the Event Horizon Telescope (EHT) have generated considerable excitement for studying the inner portions of black hole (BH) accretion disks and jets and testing elements of the General Theory of Relativity (GR). Second, the technologies and requirements involved in space-based VLBI differ considerably between 100~MHz and 100~GHz; a related consideration is that there are a number of existing instruments or mission concepts for frequencies of approximately 100~MHz and below, while it has been some time since attention has been devoted to space VLBI at frequencies above 10~GHz. This conference summary attempts to capture elements of presentations and discussions that occurred.