An early warning system for electromagnetic follow-up of gravitational-wave events
Abstract
Binary neutron stars (BNSs) will spend -- 15 minutes in the band of Advanced LIGO and Virgo detectors at design sensitivity. Matched-filtering of gravitational-wave (GW) data could in principle accumulate enough signal-to-noise ratio (SNR) to identify a forthcoming event tens of seconds before the companions collide and merge. Here we report on the design and testing of an early warning gravitational-wave detection pipeline. Early warning alerts can be produced for sources that are at low enough redshift so that a large enough SNR accumulates before merger. We find that about 7% (respectively, 49%) of the total detectable BNS mergers will be detected () before the merger. About 2% of the total detectable BNS mergers will be detected before merger and localized to within (90% credible interval). Coordinated observing by several wide-field telescopes could capture the event seconds before or after the merger. LIGO-Virgo detectors at design sensitivity could facilitate observing at least one event at the onset of merger.
Keywords
Cite
@article{arxiv.2008.04288,
title = {An early warning system for electromagnetic follow-up of gravitational-wave events},
author = {Surabhi Sachdev and Ryan Magee and Chad Hanna and Kipp Cannon and Leo Singer and Javed Rana SK and Debnandini Mukherjee and Sarah Caudill and Chiwai Chan and Jolien D. E. Creighton and Becca Ewing and Heather Fong and Patrick Godwin and Rachael Huxford and Shasvath Kapadia and Alvin K. Y. Li and Rico Ka Lok Lo and Duncan Meacher and Cody Messick and Siddharth R. Mohite and Atsushi Nishizawa and Hiroaki Ohta and Alexander Pace and Amit Reza and B. S. Sathyaprakash and Minori Shikauchi and Divya Singh and Leo Tsukada and Daichi Tsuna and Takuya Tsutsui and Koh Ueno},
journal= {arXiv preprint arXiv:2008.04288},
year = {2021}
}
Comments
small update in numbers caused by using a more updated local BNS rate estimate