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The unprecedented optical and near-infrared lightcurves of the first electromagnetic counterpart to a gravitational wave source, GW170817, a binary neutron star merger, exhibited a strong evolution from blue to near-infrared (a so-called…

High Energy Astrophysical Phenomena · Physics 2017-11-08 Christa Gall , Jens Hjorth , Stephan Rosswog , Nial R. Tanvir , Andrew J. Levan

Nuclear star clusters that surround supermassive black holes (SMBHs) in galactic nuclei are among the densest systems in the Universe, harbouring millions of stars and compact objects (COs). Within a few parsecs from the SMBH, stars can…

High Energy Astrophysical Phenomena · Physics 2019-11-06 Giacomo Fragione , Idan Ginsburg , Abraham Loeb

A massive millisecond magnetar may survive a merger of a neutron star (NS) binary, which would continuously power the merger ejecta. We develop a generic dynamic model for the merger ejecta with energy injection from the central magnetar.…

Solar and Stellar Astrophysics · Physics 2013-10-17 Yun-Wei Yu , Bing Zhang , He Gao

Rapid identification of the optical counterparts of Neutron Star (NS) merger events discovered by gravitational wave detectors may require observing a large error region and sifting through a large number of transients to identify the…

High Energy Astrophysical Phenomena · Physics 2023-11-09 E. O. Ofek , N L. Strotjohann , I. Arcavi , A. Gal-Yam , D. Kushnir , E. Waxman , M. M. Kasliwal , A. Drake , M. Graham , J. Purdum , B. Rusholme , Y. Sharma , R. Smith , A. Wold , B. F. Healy

Coalescence of neutron stars gives rise to kilonova, thermal emission powered by radioactive decays of freshly synthesized r-process nuclei. Although observational properties are largely affected by bound-bound opacities of r-process…

High Energy Astrophysical Phenomena · Physics 2020-06-10 Masaomi Tanaka , Daiji Kato , Gediminas Gaigalas , Kyohei Kawaguchi

Kilonova spectra imprint valuable information about the elements synthesized in neutron star mergers. In AT2017gfo, the kilonova associated with GW170817, the spectroscopic feature centered around 8000 angstroms has been interpreted as the…

High Energy Astrophysical Phenomena · Physics 2023-02-28 Yuta Tarumi , Kenta Hotokezaka , Nanae Domoto , Masaomi Tanaka

Neutron-star mergers were recently confirmed as sites of rapid-neutron-capture (r-process) nucleosynthesis. However, in Galactic chemical evolution models, neutron-star mergers alone cannot reproduce the observed element abundance patterns…

Neutron star binary mergers are often associated with short gamma-ray bursts (GRBs), but the recent detection of kilonovae coincident with long GRBs suggest that some mergers may produce long GRBs. Motivated by these developments, we…

High Energy Astrophysical Phenomena · Physics 2026-05-20 Mallika R. Sinha , Teagan A. Clarke , Qifang Zhang , Nikhil Sarin , Eric Thrane , Paul D. Lasky

We present ground-based optical and Hubble Space Telescope optical and near-IR observations of the short-hard GRB130603B at z=0.356, which demonstrate the presence of excess near-IR emission matching the expected brightness and color of an…

High Energy Astrophysical Phenomena · Physics 2015-06-16 E. Berger , W. Fong , R. Chornock

We present 3D kilonova radiative transfer simulations for a series of binary neutron star merger models. The masses of the neutron stars are varied as well as the total mass of the system and two different equations of state were used (SFHO…

The coalescence of binary neutron stars in the GW170817 event led to the generation of gravitational waves, accompanied by the electromagnetic counterpart known as a kilonova (KN). Since then, it has been a prime topic of interest, as it…

High Energy Astrophysical Phenomena · Physics 2026-05-19 Surojit Saha , Albert K. H Kong

We present a systematic search for optical counterparts to 13 gravitational wave (GW) triggers involving at least one neutron star during LIGO/Virgo's third observing run. We searched binary neutron star (BNS) and neutron star black hole…

High Energy Astrophysical Phenomena · Physics 2021-01-06 Mansi M. Kasliwal , Shreya Anand , Tomas Ahumada , Robert Stein , Ana Sagues Carracedo , Igor Andreoni , Michael W. Coughlin , Leo P. Singer , Erik C. Kool , Kishalay De , Harsh Kumar , Mouza AlMualla , Yuhan Yao , Mattia Bulla , Dougal Dobie , Simeon Reusch , Daniel A. Perley , S. Bradley Cenko , Varun Bhalerao , David L. Kaplan , Jesper Sollerman , Ariel Goobar , Christopher M. Copperwheat , Eric C. Bellm , G. C. Anupama , Alessandra Corsi , Samaya Nissanke , Ivan Agudo , Ashot Bagdasaryan , Sudhanshu Barway , Justin Belicki , Joshua S. Bloom , Bryce Bolin , David A. H. Buckley , Kevin B. Burdge , Rick Burruss , Maria D. Caballero-Garcıa , Chris Cannella , Alberto J. Castro-Tirado , David O. Cook , Jeff Cooke , Virginia Cunningham , Aishwarya Dahiwale , Kunal Deshmukh , Simone Dichiara , Dmitry A. Duev , Anirban Dutta , Michael Feeney , Anna Franckowiak , Sara Frederick , Christoffer Fremling , Avishay Gal-Yam , Pradip Gatkine , Shaon Ghosh , Daniel A. Goldstein , V. Zach Golkhou , Matthew J. Graham , Melissa L. Graham , Matthew J. Hankins , George Helou , Youdong Hu , Wing-Huen Ip , Amruta Jaodand , Viraj Karambelkar , Albert K. H. Kong , Marek Kowalski , Maitreya Khandagale , S. R. Kulkarni , Brajesh Kumar , Russ R. Laher , K. L. Li , Ashish Mahabal , Frank J. Masci , Adam A. Miller , Moses Mogotsi , Siddharth Mohite , Kunal Mooley , Przemek Mroz , Jeffrey A. Newman , Chow-Choong Ngeow , Samantha R. Oates , Atharva Sunil Patil , Shashi B. Pandey , M. Pavana , Elena Pian , Reed Riddle , Ruben Sanchez-Ramırez , Yashvi Sharma , Avinash Singh , Roger Smith , Maayane T. Soumagnac , Kirsty Taggart , Hanjie Tan , Anastasios Tzanidakis , Eleonora Troja , Azamat F. Valeev , Richard Walters , Gaurav Waratkar , Sara Webb , Po-Chieh Yu , Bin-Bin Zhang , Rongpu Zhou , Jeffry Zolkower

Gamma-ray bursts (GRBs) have traditionally been classified by their prompt emission duration and spectral hardness, with short GRBs (sGRB; $\lesssim2 \ \rm{s}$) originating from compact object mergers and long GRBs (LGRB; $\gtrsim2 \…

High Energy Astrophysical Phenomena · Physics 2026-04-09 Hannah Skobe , Brendan O'Connor , Antonella Palmese , Lewi Westcott , Christopher J. Conselice , Katelyn Breivik

The first direct detection of gravitational waves (GW) by the ground-based interferometers is expected to occur within the next few years. These interferometers will detect the mergers of compact object binaries composed of neutron stars…

Instrumentation and Methods for Astrophysics · Physics 2016-06-15 P. S. Cowperthwaite , E. Berger

The final inspiral of double neutron star and neutron star-black hole binaries are likely to be detected by advanced networks of ground-based gravitational wave (GW) interferometers. Maximizing the science returns from such a discovery will…

High Energy Astrophysical Phenomena · Physics 2015-05-30 Brian D. Metzger , Edo Berger

The coalescence of binary neutron stars can yield the expulsion of a fast-moving, quasi-isotropic material, which may induce thermal radiation and give rise to kilonova emission. Moreover, the interaction between the ejected material and…

High Energy Astrophysical Phenomena · Physics 2024-02-29 Shao-Ze Li , Yun-Wei Yu , He Gao , Lin Lan

Neutron star mergers are cosmic catastrophes that produce some of the most energetic observed phenomena: short gamma-ray bursts, gravitational wave signals, and kilonovae. The latter are optical transients, powered by radioactive nuclides…

The discovery of gravitational waves from a neutron star merger in 2017 (GW170817) and the associated kilonova (AT2017gfo) confirmed these events as key sites for heavy element production through the r-process. Subsequent observations,…

Atomic Physics · Physics 2025-09-11 Jérôme Deprince , Lucas Maison

Mergers of binary neutron stars are multimessenger sources of gravitational waves that have an optical luminous counterpart, commonly referred to as 'kilonova'. Inspired by the detection of GW170817, intensive searches have been conducted…

High Energy Astrophysical Phenomena · Physics 2023-08-23 Runduo Liang , Zhengyan Liu , Lei Lei , Wen Zhao