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Data-driven expectations for electromagnetic counterpart searches based on LIGO/Virgo public alerts

  • Searches for electromagnetic counterparts of gravitational-wave signals have redoubled since the first detection in 2017 of a binary neutron star merger with a gamma-ray burst, optical/infrared kilonova, and panchromatic afterglow. Yet, one LIGO/Virgo observing run later, there has not yet been a second, secure identification of an electromagnetic counterpart. This is not surprising given that the localization uncertainties of events in LIGO and Virgo's third observing run, O3, were much larger than predicted. We explain this by showing that improvements in data analysis that now allow LIGO/Virgo to detect weaker and hence more poorly localized events have increased the overall number of detections, of which well-localized, gold-plated events make up a smaller proportion overall. We present simulations of the next two LIGO/Virgo/KAGRA observing runs, O4 and O5, that are grounded in the statistics of O3 public alerts. To illustrate the significant impact that the updated predictions can have, we study the follow-up strategy for theSearches for electromagnetic counterparts of gravitational-wave signals have redoubled since the first detection in 2017 of a binary neutron star merger with a gamma-ray burst, optical/infrared kilonova, and panchromatic afterglow. Yet, one LIGO/Virgo observing run later, there has not yet been a second, secure identification of an electromagnetic counterpart. This is not surprising given that the localization uncertainties of events in LIGO and Virgo's third observing run, O3, were much larger than predicted. We explain this by showing that improvements in data analysis that now allow LIGO/Virgo to detect weaker and hence more poorly localized events have increased the overall number of detections, of which well-localized, gold-plated events make up a smaller proportion overall. We present simulations of the next two LIGO/Virgo/KAGRA observing runs, O4 and O5, that are grounded in the statistics of O3 public alerts. To illustrate the significant impact that the updated predictions can have, we study the follow-up strategy for the Zwicky Transient Facility. Realistic and timely forecasting of gravitational-wave localization accuracy is paramount given the large commitments of telescope time and the need to prioritize which events are followed up. We include a data release of our simulated localizations as a public proposal planning resource for astronomers.show moreshow less

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Author details:Polina PetrovORCiD, Leo P. SingerORCiD, Michael W. CoughlinORCiD, Vishwesh KumarORCiD, Mouza AlmuallaORCiD, Shreya AnandORCiD, Mattia BullaORCiDGND, Tim DietrichORCiDGND, Francois FoucartORCiDGND, Nidhal GuessoumORCiDGND
DOI:https://doi.org/10.3847/1538-4357/ac366d
ISSN:1538-4357
Title of parent work (English):The astrophysical journal : an international review of spectroscopy and astronomical physics; part 1
Publisher:Institute of Physics Publ.
Place of publishing:London
Publication type:Article
Language:English
Date of first publication:2022/01/12
Publication year:2022
Release date:2024/07/11
Volume:924
Issue:2
Article number:54
Number of pages:10
Funding institution:UMN Research Experiences for Undergraduates (REU) - REU [NSF1757388];; Multimessenger Astro Connection Science Task Group (STG) at NASA Goddard; Space Flight Center; National Science Foundation [PHY-2010970,; OAC-2117997]; National Science Foundation GROWTH PIRE grant [1545949];; Swedish Research Council [2020-03330]
Organizational units:Mathematisch-Naturwissenschaftliche Fakultät / Institut für Physik und Astronomie
DDC classification:5 Naturwissenschaften und Mathematik / 52 Astronomie / 520 Astronomie und zugeordnete Wissenschaften
5 Naturwissenschaften und Mathematik / 53 Physik / 530 Physik
Peer review:Referiert
Publishing method:Open Access / Gold Open-Access
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License (German):License LogoCC-BY - Namensnennung 4.0 International
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