MWA rapid follow-up of gravitational wave transients: Prospects for detecting prompt radio counterparts

IF 4.5 3区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS Publications of the Astronomical Society of Australia Pub Date : 2023-01-01 DOI:10.1017/pasa.2023.49
J. Tian, G. E. Anderson, A. J. Cooper, K. Gourdji, M. Sokolowski, A. Rowlinson, A. Williams, G. Sleap, D. Dobie, D. L. Kaplan, Tara Murphy, S. J. Tingay, F. H. Panther, P. D. Lasky, A. Bahramian, J. C. A. Miller-Jones, C. W. James, B. W. Meyers, S. J. McSweeney, P. J. Hancock
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Abstract

Abstract We present and evaluate the prospects for detecting coherent radio counterparts to gravitational wave (GW) events using Murchison Widefield Array (MWA) triggered observations. The MWA rapid-response system, combined with its buffering mode ( $\sim$ 4 min negative latency), enables us to catch any radio signals produced from seconds prior to hours after a binary neutron star (BNS) merger. The large field of view of the MWA ( $\sim$ $1\,000\,\textrm{deg}^2$ at 120 MHz) and its location under the high sensitivity sky region of the LIGO-Virgo-KAGRA (LVK) detector network, forecast a high chance of being on-target for a GW event. We consider three observing configurations for the MWA to follow up GW BNS merger events, including a single dipole per tile, the full array, and four sub-arrays. We then perform a population synthesis of BNS systems to predict the radio detectable fraction of GW events using these configurations. We find that the configuration with four sub-arrays is the best compromise between sky coverage and sensitivity as it is capable of placing meaningful constraints on the radio emission from 12.6% of GW BNS detections. Based on the timescales of four BNS merger coherent radio emission models, we propose an observing strategy that involves triggering the buffering mode to target coherent signals emitted prior to, during or shortly following the merger, which is then followed by continued recording for up to three hours to target later time post-merger emission. We expect MWA to trigger on $\sim$ $5-22$ BNS merger events during the LVK O4 observing run, which could potentially result in two detections of predicted coherent emission.
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引力波瞬态的MWA快速跟踪:探测提示无线电对应物的前景
摘要:本文提出并评价了利用默奇森广域阵列(MWA)触发观测探测引力波(GW)事件相干射电对应体的前景。MWA快速响应系统,结合其缓冲模式(4分钟负延迟),使我们能够捕捉到双中子星(BNS)合并后几秒钟到几小时内产生的任何无线电信号。MWA大视场(\ \ sim美元1美元,000 \ \ textrm{度}^ 2美元在120 MHz)和它的位置在高灵敏度的天空区域LIGO-Virgo-KAGRA (LVK)探测器网络,预测高目标的机会GW的事件。我们考虑了MWA跟踪GW - BNS合并事件的三种观测配置,包括每瓦一个偶极子、整个阵列和四个子阵列。然后,我们执行BNS系统的种群合成,以预测使用这些配置的GW事件的无线电可探测部分。我们发现四个子阵列的配置是天空覆盖和灵敏度之间的最佳折衷,因为它能够对12.6%的GW BNS探测的无线电发射施加有意义的限制。基于四种BNS合并相干射电发射模型的时间尺度,我们提出了一种观测策略,该策略包括触发缓冲模式以瞄准合并之前,合并期间或合并后不久发射的相干信号,然后继续记录长达三小时以瞄准合并后的晚时间发射。我们预计在LVK O4观测运行期间,MWA将触发5-22 BNS合并事件,这可能导致两次预测相干发射的检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Publications of the Astronomical Society of Australia
Publications of the Astronomical Society of Australia 地学天文-天文与天体物理
CiteScore
5.90
自引率
9.50%
发文量
41
审稿时长
>12 weeks
期刊介绍: Publications of the Astronomical Society of Australia (PASA) publishes new and significant research in astronomy and astrophysics. PASA covers a wide range of topics within astronomy, including multi-wavelength observations, theoretical modelling, computational astronomy and visualisation. PASA also maintains its heritage of publishing results on southern hemisphere astronomy and on astronomy with Australian facilities. PASA publishes research papers, review papers and special series on topical issues, making use of expert international reviewers and an experienced Editorial Board. As an electronic-only journal, PASA publishes paper by paper, ensuring a rapid publication rate. There are no page charges. PASA''s Editorial Board approve a certain number of papers per year to be published Open Access without a publication fee.
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