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Liam Cunningham

Researcher at University of Glasgow

Publications -  196
Citations -  54150

Liam Cunningham is an academic researcher from University of Glasgow. The author has contributed to research in topics: Gravitational wave & LIGO. The author has an hindex of 74, co-authored 196 publications receiving 43872 citations.

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Search for High-energy Neutrinos from Binary Neutron Star Merger GW170817 with ANTARES, IceCube, and the Pierre Auger Observatory

Arnauld Albert, +1990 more
TL;DR: In this paper, the authors search for high-energy neutrinos from the binary neutron star merger in the GeV-EeV energy range using the Antares, IceCube, and Pierre Auger Observatories.
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A gravitational-wave measurement of the Hubble constant following the second observing run of Advanced LIGO and Virgo

B. P. Abbott, +1276 more
TL;DR: In this article, the first and second observing runs of the Advanced LIGO and Virgo detector network were used to obtain the first standard-siren measurement of the Hubble constant (H 0).
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A guide to LIGO–Virgo detector noise and extraction of transient gravitational-wave signals

B. P. Abbott, +1165 more
TL;DR: The LIGO Scientific Collaboration and the Virgo Collaboration have cataloged eleven confidently detected gravitational-wave events during the first two observing runs of the advanced detector era as discussed by the authors.
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Search for post-merger gravitational waves from the remnant of the binary neutron star merger GW170817

B. P. Abbott, +1103 more
TL;DR: In this paper, the authors presented a search for gravitational waves from the remnant of the binary neutron star merger GW170817 using data from Advanced LIGO and Advanced Virgo and found no signal from the post-merger remnant.
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Upper limits on the rates of binary neutron star and neutron-star--black-hole mergers from Advanced LIGO's first observing run

B. P. Abbott, +955 more
TL;DR: In this article, the authors reported the non-detection of gravitational waves from the merger of binary neutron star systems and neutron-star-black-hole systems during the first observing run of Advanced LIGO.