论文标题

在O3A中,decam增长搜索淡淡而遥远的二进制中子星和中子星形孔合并

DECam-GROWTH Search for the Faint and Distant Binary Neutron Star and Neutron Star-Black Hole Mergers in O3a

论文作者

Anand, Shreya, Andreoni, Igor, Goldstein, Daniel A., Kasliwal, Mansi M., Ahumada, Tomás, Barnes, Jennifer, Bloom, Joshua S., Bulla, Mattia, Cenko, S. Bradley, Cooke, Jeff, Coughlin, Michael W., Nugent, Peter E., Singer, Leo P.

论文摘要

概要搜索与二进制中子星(BNS)或中子星 - 黑洞(NSBH)合并的光学对应物可能在发现Kilonovae并进行多童科学科学方面构成重大挑战。在这项工作中,我们将全球多型网络网络的优势描述为这一目标,特别关注钥匙和互补角色黑暗能源摄像机(DECAM)在多物质性随访中扮演。我们描述了观察瞬变的全球接力(增长)元帅(也是元帅),这是我们为摄入事件摄入,计划观察,寻找瞬态候选者的常见Web应用程序,并检索网络中所有望远镜的绩效汇总统计信息。我们的基础设施使我们能够在O3A,S190426C和S190510G期间对两个事件进行观察。此外,我们对DESGW团队进行的S190814BV的深度DEDAM观察分析,并访问各种全球后续设施,使我们能够对Kilonova和合并二元的参数对有意义的限制。我们强调了全球望远镜网络的重要性以及像DECAM这样的功率望远镜在进行引力波源的搜索方面的搜索。

Synoptic searches for the optical counterpart to a binary neutron star (BNS) or neutron star-black hole (NSBH) merger can pose significant challenges towards the discovery of kilonovae and performing multi-messenger science. In this work, we describe the advantage of a global multi-telescope network towards this end, with a particular focus on the key and complementary role the Dark Energy Camera (DECam) plays in multi-facility follow-up. We describe the Global Relay of Observatories Watching Transients Happen (GROWTH) Target-of-Opportunity (ToO) Marshal, a common web application we built to ingest events, plan observations, search for transient candidates, and retrieve performance summary statistics for all of the telescopes in our network. Our infrastructure enabled us to conduct observations of two events during O3a, S190426c and S190510g. Furthermore, our analysis of deep DECam observations of S190814bv conducted by the DESGW team, and access to a variety of global follow-up facilities allowed us to place meaningful constraints on the parameters of the kilonova and the merging binary. We emphasize the importance of a global telescope network in conjunction with a power telescope like DECam in performing searches for the counterparts to gravitational-wave sources.

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