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Low-Latency Algorithm for Multi-messenger Astrophysics (LLAMA) with Gravitational-Wave and High-Energy Neutrino Candidates
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We describe in detail the online data analysis pipeline that was used in the multi-messenger search for common sources of gravitational waves (GWs) and high-energy neutrinos (HENs) during the second observing period (O2) of Advanced LIGO and Advanced Virgo. Beyond providing added scientific insight into source events, low-latency coincident HENs can offer better localization than GWs alone, allowing for faster electromagnetic follow-up. Transitioning GW+HEN analyses to low-latency, automated pipelines is therefore mission-critical for future multi-messenger efforts. The O2 Low-Latency Algorithm for Multi-messenger Astrophysics (\pipeline) also served as a proof-of-concept for future online GW+HEN searches and led to a codebase that can handle other messengers as well. During O2, the pipeline was used to take LIGO/Virgo GW candidates as triggers and search in realtime for temporally coincident HEN candidates provided by the IceCube Collaboration that fell within the \ninetyCR of the reconstructed GW skymaps. The algorithm used NASA's Gamma-ray Coordinates Network to report coincident alerts to LIGO/Virgo's electromagnetic follow-up partners.
Forward citations
Cited by 3 Pith papers
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Gravitational-wave follow-up with CTA after the detection of GRBs in the TeV energy domain
Given TeV emission similar to GRB 090510, CTA could detect short-GRB counterparts of gravitational-wave mergers even when follow-up starts more than an hour after the event.
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Results from IceCube Searches for High-energy Neutrinos Coincident with Gravitational-Wave Alerts in LVK O4
No significant high-energy neutrino emission was found coincident with 2500 gravitational-wave alerts in O4 through April 2025, with upper limits set under an E^-2 spectrum assumption.
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Multi-messenger Gravitational-Wave + High-Energy Neutrino Searches with LIGO, Virgo, and IceCube
The LLAMA pipeline searched for coincidence between gravitational waves and neutrinos during LIGO/Virgo's O3 run and found no significant joint signals.
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