论文标题

迈向集成的光学瞬态实用程序

Towards An Integrated Optical Transient Utility

论文作者

Kulkarni, S. R.

论文摘要

持续的光学时间域天文学调查通常每晚报告五十名临时候选者。在这里,我研究了2019年报告给瞬态名称服务器的天文瞬变和超新星分类的人口统计。我发现只有十分之一的瞬变是频谱分类的。这个严重的“瓶颈”问题应涉及天文学家和资助机构。一旦LSST在线,瓶颈将变得更糟20(或更多)。我们需要从根本上重新考虑调查瞬变的目的。在这里,在对此问题进行详细调查后,我提供了一些解决方案。展望未来,天文学家将采用两种不同的方法:(1)多波段的光度法方法非常适合研究非常大的,数万个微弱的瞬态样本; (2)在当地宇宙中与星系相关的较浅和每晚的宽场光度法调查和瞬态的较浅和每晚的宽场光度法调查中发现的数千个明亮瞬态的光谱分类。后一个程序除了发掘新的瞬变类型,并为天文学家提供了进行广泛的有趣瞬态跟进的机会,还需要为前者奠定基础。具体而言,我建议一项全球协调的努力,以分类明亮的超新星(<〜19.5 mag)和本地宇宙内的瞬变(<200 MPC)(<200 MPC)(<200 MPC),该提议的程序已触及 - 由于正在进行的广阔范围调查,持续的宽田调查,新的光谱仪,用于分类的新型光谱仪的开发,用于越来越多的光谱量的新颖性和越来越多的光谱量的范围,并且是越来越多的光谱仪的范围。

The ongoing optical time-domain astronomy surveys are routinely reporting fifty transient candidates per night. Here, I investigate the demographics of astronomical transients and supernova classifications reported to the Transient Name Server in the year 2019. I find that only a tenth of the transients were spectrally classified. This severe "bottleneck" problem should concern astronomers and also funding agencies. The bottleneck will get worse by a factor of 20 (or more) once LSST comes on line. We need to fundamentally rethink the purpose of surveys for transients. Here, after undertaking a detailed investigation of this issue I offer some solutions. Going forward, astronomers will employ two different methodologies: (1) multi-band photometric method which is well suited to the study of very large, many tens of thousands, samples of faint transients; (2) spectral classifications of thousands of bright transients found in shallow and nightly cadenced wide-field photometry surveys and transients associated with galaxies in the local Universe. The latter program, in addition to unearthing new types of transients and offering astronomers opportunities to undertake extensive follow up of interesting transients, is needed to set the stage for the former. Specifically, I suggest a globally coordinated effort to spectrally classify a complete sample of bright supernovae (< ~19.5 mag) and transients within the local Universe (< 200 Mpc) The proposed program is within reach -- thanks to the on-going wide-field surveys, the development of novel spectrographs tuned for classification, great improvements in throughput of spectrographs and the increasing availability of robotic telescopes.

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